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Published in: Acta Neuropathologica 1/2011

01-01-2011 | Review

Phenotypic variability of sporadic human prion disease and its molecular basis: past, present, and future

Authors: Piero Parchi, Rosaria Strammiello, Armin Giese, Hans Kretzschmar

Published in: Acta Neuropathologica | Issue 1/2011

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Abstract

Human prion diseases are rare neurodegenerative disorders related to prion protein misfolding that can occur as sporadic, familial or acquired forms. In comparison to other more common neurodegenerative disorders, prion diseases show a wider range of phenotypic variation and largely transmit to experimental animals, a feature that led to the isolation and characterization of different strains of the transmissible agent or prion with distinct biological properties. Biochemically distinct PrPSc types have been demonstrated which differ in their size after proteinase cleavage, glycosylation pattern, and possibly other features related to their conformation. These PrPSc types, possibly enciphering the prion strains, together with the naturally occurring polymorphism at codon 129 in the prion protein gene have a major influence on the disease phenotype. In the sporadic form, the most common but perhaps least understood form of human prion disease, there are at least six major combinations of codon 129 genotype and prion protein isotype, which are significantly related to distinctive clinical–pathological subgroups of the disease. In this review, we provide an update on the current knowledge and classification of the disease subtypes of the sporadic human prion diseases as defined by molecular features and pathological changes. Furthermore, we discuss the molecular basis of phenotypic variability taking into account the results of recent transmission studies that shed light on the extent of prion strain variation in humans.
Literature
1.
go back to reference Adams H, Beck E, Shenkin AM (1974) Creutzfeldt–Jakob disease: further similarities with kuru. J Neurol Neurosurg Psychiatry 37:195–200PubMedCrossRef Adams H, Beck E, Shenkin AM (1974) Creutzfeldt–Jakob disease: further similarities with kuru. J Neurol Neurosurg Psychiatry 37:195–200PubMedCrossRef
2.
go back to reference Alema G, Bignami A (1959) Subacute degenerative presenile polioencephalopathy with akinetic stupor and decorticate rigidity with myoclonus (“myoclonic” variety of the Jakob–Creutzfeldt disease). Riv Sper Freniatr Med Leg Alien Ment 83(4 Suppl):1485–1623 Alema G, Bignami A (1959) Subacute degenerative presenile polioencephalopathy with akinetic stupor and decorticate rigidity with myoclonus (“myoclonic” variety of the Jakob–Creutzfeldt disease). Riv Sper Freniatr Med Leg Alien Ment 83(4 Suppl):1485–1623
3.
go back to reference Aucouturier P, Kascsak RJ, Frangione B, Wisniewski T (1999) Biochemical and conformational variability of human prion strains in sporadic Creutzfeldt–Jakob disease. Neurosci Lett 274:33–36PubMedCrossRef Aucouturier P, Kascsak RJ, Frangione B, Wisniewski T (1999) Biochemical and conformational variability of human prion strains in sporadic Creutzfeldt–Jakob disease. Neurosci Lett 274:33–36PubMedCrossRef
4.
go back to reference Baker CA, Lu ZY, Zaitsev I, Manuelidis L (1999) Microglial activation varies in different models of Creutzfeldt–Jakob disease. J Virol 73:5089–5097PubMed Baker CA, Lu ZY, Zaitsev I, Manuelidis L (1999) Microglial activation varies in different models of Creutzfeldt–Jakob disease. J Virol 73:5089–5097PubMed
5.
go back to reference Baron TG, Madec JY, Calavas D, Richard Y, Barillet F (2000) Comparison of French natural scrapie isolates with bovine spongiform encephalopathy and experimental scrapie infected sheep. Neurosci Lett 284:175–178PubMedCrossRef Baron TG, Madec JY, Calavas D, Richard Y, Barillet F (2000) Comparison of French natural scrapie isolates with bovine spongiform encephalopathy and experimental scrapie infected sheep. Neurosci Lett 284:175–178PubMedCrossRef
6.
go back to reference Beck JA, Mead S, Campbell TA, Dickinson A, Wientjens DP, Croes EA, Van Duijn CM, Collinge J (2001) Two-octapeptide repeat deletion of prion protein associated with rapidly progressive dementia. Neurology 57:354–356PubMed Beck JA, Mead S, Campbell TA, Dickinson A, Wientjens DP, Croes EA, Van Duijn CM, Collinge J (2001) Two-octapeptide repeat deletion of prion protein associated with rapidly progressive dementia. Neurology 57:354–356PubMed
7.
go back to reference Berciano J, Berciano MT, Polo JM, Figols J, Ciudad J, Lafarga M (1990) Creutzfeldt–Jakob disease with severe involvement of cerebral white matter and cerebellum. Virchows Arch A Pathol Anat Histopathol 417:533–538PubMedCrossRef Berciano J, Berciano MT, Polo JM, Figols J, Ciudad J, Lafarga M (1990) Creutzfeldt–Jakob disease with severe involvement of cerebral white matter and cerebellum. Virchows Arch A Pathol Anat Histopathol 417:533–538PubMedCrossRef
8.
go back to reference Bishop MT, Will RG, Manson JC (2010) Defining sporadic Creutzfeldt–Jakob disease strains and their transmission properties. Proc Natl Acad Sci USA 107:12005–12010PubMedCrossRef Bishop MT, Will RG, Manson JC (2010) Defining sporadic Creutzfeldt–Jakob disease strains and their transmission properties. Proc Natl Acad Sci USA 107:12005–12010PubMedCrossRef
9.
go back to reference Brown DR, Qin K, Herms JW, Madlung A, Manson J, Strome R, Fraser PE, Kruck T, von Bohlen A, Schulz-Schaeffer W, Giese A, Westaway D, Kretzschmar H (1997) The cellular prion protein binds copper in vivo. Nature 390:684–687PubMedCrossRef Brown DR, Qin K, Herms JW, Madlung A, Manson J, Strome R, Fraser PE, Kruck T, von Bohlen A, Schulz-Schaeffer W, Giese A, Westaway D, Kretzschmar H (1997) The cellular prion protein binds copper in vivo. Nature 390:684–687PubMedCrossRef
10.
go back to reference Brown P, Cathala F, Castaigne P, Gajdusek DC (1986) Creutzfeldt–Jakob disease: clinical analysis of a consecutive series of 230 neuropathologically verified cases. Ann Neurol 20:597–602PubMedCrossRef Brown P, Cathala F, Castaigne P, Gajdusek DC (1986) Creutzfeldt–Jakob disease: clinical analysis of a consecutive series of 230 neuropathologically verified cases. Ann Neurol 20:597–602PubMedCrossRef
11.
go back to reference Brown P, Wolff A, Gajdusek DC (1990) A simple and effective method for inactivating virus infectivity in formalin-fixed tissue samples from patients with Creutzfeldt–Jakob disease. Neurology 40:887–890PubMed Brown P, Wolff A, Gajdusek DC (1990) A simple and effective method for inactivating virus infectivity in formalin-fixed tissue samples from patients with Creutzfeldt–Jakob disease. Neurology 40:887–890PubMed
12.
go back to reference Brownell B, Oppenheimer DR (1965) An ataxic form of subacute presenile polioencephalopathy (Creutzfeldt–Jakob Disease). J Neurol Neurosurg Psychiatry 28:350–361PubMedCrossRef Brownell B, Oppenheimer DR (1965) An ataxic form of subacute presenile polioencephalopathy (Creutzfeldt–Jakob Disease). J Neurol Neurosurg Psychiatry 28:350–361PubMedCrossRef
13.
go back to reference Bruce ME, Will RG, Ironside JW, McConnell I, Drummond D, Suttie A, McCardle L, Chree A, Hope J, Birkett C, Cousens S, Fraser H, Bostock CJ (1997) Transmissions to mice indicate that ‘new variant’ CJD is caused by the BSE agent. Nature 389:498–501PubMedCrossRef Bruce ME, Will RG, Ironside JW, McConnell I, Drummond D, Suttie A, McCardle L, Chree A, Hope J, Birkett C, Cousens S, Fraser H, Bostock CJ (1997) Transmissions to mice indicate that ‘new variant’ CJD is caused by the BSE agent. Nature 389:498–501PubMedCrossRef
14.
go back to reference Cali I, Castellani R, Alshekhlee A, Cohen Y, Blevins J, Yuan J, Langeveld JP, Parchi P, Safar JG, Zou WQ, Gambetti P (2009) Co-existence of scrapie prion protein types 1 and 2 in sporadic Creutzfeldt–Jakob disease: its effect on the phenotype and prion-type characteristics. Brain 132:2643–2658PubMedCrossRef Cali I, Castellani R, Alshekhlee A, Cohen Y, Blevins J, Yuan J, Langeveld JP, Parchi P, Safar JG, Zou WQ, Gambetti P (2009) Co-existence of scrapie prion protein types 1 and 2 in sporadic Creutzfeldt–Jakob disease: its effect on the phenotype and prion-type characteristics. Brain 132:2643–2658PubMedCrossRef
15.
go back to reference Cali I, Castellani R, Yuan J, Al-Shekhlee A, Cohen ML, Xiao X, Moleres FJ, Parchi P, Zou WQ, Gambetti P (2006) Classification of sporadic Creutzfeldt–Jakob disease revisited. Brain 129:2266–2277PubMedCrossRef Cali I, Castellani R, Yuan J, Al-Shekhlee A, Cohen ML, Xiao X, Moleres FJ, Parchi P, Zou WQ, Gambetti P (2006) Classification of sporadic Creutzfeldt–Jakob disease revisited. Brain 129:2266–2277PubMedCrossRef
16.
go back to reference Cancellotti E, Bradford BM, Tuzi NL, Hickey RD, Brown D, Brown KL, Barron RM, Kisielewski D, Piccardo P, Manson JC (2010) Glycosylation of PrPC determines timing of neuroinvasion and targeting in the brain following transmissible spongiform encephalopathy infection by a peripheral route. J Virol 84:3464–3475PubMedCrossRef Cancellotti E, Bradford BM, Tuzi NL, Hickey RD, Brown D, Brown KL, Barron RM, Kisielewski D, Piccardo P, Manson JC (2010) Glycosylation of PrPC determines timing of neuroinvasion and targeting in the brain following transmissible spongiform encephalopathy infection by a peripheral route. J Virol 84:3464–3475PubMedCrossRef
17.
go back to reference Capellari S, Parchi P, Russo CM, Sanford J, Sy MS, Gambetti P, Petersen RB (2000) Effect of the E200K mutation on prion protein metabolism. Comparative study of a cell model and human brain. Am J Pathol 157:613–622PubMed Capellari S, Parchi P, Russo CM, Sanford J, Sy MS, Gambetti P, Petersen RB (2000) Effect of the E200K mutation on prion protein metabolism. Comparative study of a cell model and human brain. Am J Pathol 157:613–622PubMed
18.
go back to reference Capellari S, Parchi P, Wolff BD, Campbell J, Atkinson R, Posey DM, Petersen RB, Gambetti P (2002) Creutzfeldt–Jakob disease associated with a deletion of two repeats in the prion protein gene. Neurology 59:1628–1630PubMed Capellari S, Parchi P, Wolff BD, Campbell J, Atkinson R, Posey DM, Petersen RB, Gambetti P (2002) Creutzfeldt–Jakob disease associated with a deletion of two repeats in the prion protein gene. Neurology 59:1628–1630PubMed
19.
go back to reference Castellani RJ, Colucci M, Xie Z, Zou W, Li C, Parchi P, Capellari S, Pastore M, Rahbar MH, Chen SG, Gambetti P (2004) Sensitivity of 14-3-3 protein test varies in subtypes of sporadic Creutzfeldt–Jakob disease. Neurology 63:436–442PubMed Castellani RJ, Colucci M, Xie Z, Zou W, Li C, Parchi P, Capellari S, Pastore M, Rahbar MH, Chen SG, Gambetti P (2004) Sensitivity of 14-3-3 protein test varies in subtypes of sporadic Creutzfeldt–Jakob disease. Neurology 63:436–442PubMed
20.
go back to reference Caughey B, Raymond GJ, Kocisko DA, Lansbury PT Jr (1997) Scrapie infectivity correlates with converting activity, protease resistance, and aggregation of scrapie-associated prion protein in guanidine denaturation studies. J Virol 71:4107–4110PubMed Caughey B, Raymond GJ, Kocisko DA, Lansbury PT Jr (1997) Scrapie infectivity correlates with converting activity, protease resistance, and aggregation of scrapie-associated prion protein in guanidine denaturation studies. J Virol 71:4107–4110PubMed
21.
go back to reference Chou SM, Martin JD (1971) Kuru-plaques in a case of Creutzfeldt–Jakob disease. Acta Neuropathol 17:150–155PubMedCrossRef Chou SM, Martin JD (1971) Kuru-plaques in a case of Creutzfeldt–Jakob disease. Acta Neuropathol 17:150–155PubMedCrossRef
22.
go back to reference Collinge J, Sidle KC, Meads J, Ironside J, Hill AF (1996) Molecular analysis of prion strain variation and the aetiology of ‘new variant’ CJD. Nature 383:685–690PubMedCrossRef Collinge J, Sidle KC, Meads J, Ironside J, Hill AF (1996) Molecular analysis of prion strain variation and the aetiology of ‘new variant’ CJD. Nature 383:685–690PubMedCrossRef
23.
go back to reference Collins SJ, Sanchez-Juan P, Masters CL, Klug GM, van Duijn C, Poleggi A, Pocchiari M, Almonti S, Cuadrado-Corrales N, de Pedro-Cuesta J, Budka H, Gelpi E, Glatzel M, Tolnay M, Hewer E, Zerr I, Heinemann U, Kretszchmar HA, Jansen GH, Olsen E, Mitrova E, Alperovitch A, Brandel JP, Mackenzie J, Murray K, Will RG (2006) Determinants of diagnostic investigation sensitivities across the clinical spectrum of sporadic Creutzfeldt–Jakob disease. Brain 129:2278–2287PubMedCrossRef Collins SJ, Sanchez-Juan P, Masters CL, Klug GM, van Duijn C, Poleggi A, Pocchiari M, Almonti S, Cuadrado-Corrales N, de Pedro-Cuesta J, Budka H, Gelpi E, Glatzel M, Tolnay M, Hewer E, Zerr I, Heinemann U, Kretszchmar HA, Jansen GH, Olsen E, Mitrova E, Alperovitch A, Brandel JP, Mackenzie J, Murray K, Will RG (2006) Determinants of diagnostic investigation sensitivities across the clinical spectrum of sporadic Creutzfeldt–Jakob disease. Brain 129:2278–2287PubMedCrossRef
24.
go back to reference Cruz-Sanchez F, Lafuente J, Gertz HJ, Stoltenburg-Didinger G (1987) Spongiform encephalopathy with extensive involvement of white matter. J Neurol Sci 82:81–87PubMedCrossRef Cruz-Sanchez F, Lafuente J, Gertz HJ, Stoltenburg-Didinger G (1987) Spongiform encephalopathy with extensive involvement of white matter. J Neurol Sci 82:81–87PubMedCrossRef
25.
go back to reference de Silva R, Ironside JW, McCardle L, Esmonde T, Bell J, Will R, Windl O, Dempster M, Estibeiro P, Lathe R (1994) Neuropathological phenotype and ‘prion protein’ genotype correlation in sporadic Creutzfeldt–Jakob disease. Neurosci Lett 179:50–52PubMedCrossRef de Silva R, Ironside JW, McCardle L, Esmonde T, Bell J, Will R, Windl O, Dempster M, Estibeiro P, Lathe R (1994) Neuropathological phenotype and ‘prion protein’ genotype correlation in sporadic Creutzfeldt–Jakob disease. Neurosci Lett 179:50–52PubMedCrossRef
26.
go back to reference DeArmond SJ, Sanchez H, Yehiely F, Qiu Y, Ninchak-Casey A, Daggett V, Camerino AP, Cayetano J, Rogers M, Groth D, Torchia M, Tremblay P, Scott MR, Cohen FE, Prusiner SB (1997) Selective neuronal targeting in prion disease. Neuron 19:1337–1348PubMedCrossRef DeArmond SJ, Sanchez H, Yehiely F, Qiu Y, Ninchak-Casey A, Daggett V, Camerino AP, Cayetano J, Rogers M, Groth D, Torchia M, Tremblay P, Scott MR, Cohen FE, Prusiner SB (1997) Selective neuronal targeting in prion disease. Neuron 19:1337–1348PubMedCrossRef
27.
28.
go back to reference Endo T, Groth D, Prusiner SB, Kobata A (1989) Diversity of oligosaccharide structures linked to asparagines of the scrapie prion protein. Biochemistry 28:8380–8388PubMedCrossRef Endo T, Groth D, Prusiner SB, Kobata A (1989) Diversity of oligosaccharide structures linked to asparagines of the scrapie prion protein. Biochemistry 28:8380–8388PubMedCrossRef
29.
go back to reference Garcin RBS, Khochneviss AA (1963) Le syndrome de Creutzfeldt–Jakob et les syndromes corticotrices du presenium (à l’occasion d’ observations anatomo-cliniques). Rev Neurol (Paris) 109:419–441 Garcin RBS, Khochneviss AA (1963) Le syndrome de Creutzfeldt–Jakob et les syndromes corticotrices du presenium (à l’occasion d’ observations anatomo-cliniques). Rev Neurol (Paris) 109:419–441
30.
go back to reference Giese A, Brown DR, Groschup MH, Feldmann C, Haist I, Kretzschmar HA (1998) Role of microglia in neuronal cell death in prion disease. Brain Pathol 8:449–457PubMedCrossRef Giese A, Brown DR, Groschup MH, Feldmann C, Haist I, Kretzschmar HA (1998) Role of microglia in neuronal cell death in prion disease. Brain Pathol 8:449–457PubMedCrossRef
31.
go back to reference Gmitterova K, Heinemann U, Bodemer M, Krasnianski A, Meissner B, Kretzschmar HA, Zerr I (2009) 14-3-3 CSF levels in sporadic Creutzfeldt–Jakob disease differ across molecular subtypes. Neurobiol Aging 30:1842–1850PubMedCrossRef Gmitterova K, Heinemann U, Bodemer M, Krasnianski A, Meissner B, Kretzschmar HA, Zerr I (2009) 14-3-3 CSF levels in sporadic Creutzfeldt–Jakob disease differ across molecular subtypes. Neurobiol Aging 30:1842–1850PubMedCrossRef
32.
go back to reference Gomori AJ, Partnow MJ, Horoupian DS, Hirano A (1973) The ataxic form of Creutzfeldt–Jakob disease. Arch Neurol 29:318–323PubMed Gomori AJ, Partnow MJ, Horoupian DS, Hirano A (1973) The ataxic form of Creutzfeldt–Jakob disease. Arch Neurol 29:318–323PubMed
33.
34.
go back to reference Haik S, Galanaud D, Linguraru MG, Peoc’h K, Privat N, Faucheux BA, Ayache N, Hauw JJ, Dormont D, Brandel JP (2008) In vivo detection of thalamic gliosis: a pathoradiologic demonstration in familial fatal insomnia. Arch Neurol 65:545–549PubMedCrossRef Haik S, Galanaud D, Linguraru MG, Peoc’h K, Privat N, Faucheux BA, Ayache N, Hauw JJ, Dormont D, Brandel JP (2008) In vivo detection of thalamic gliosis: a pathoradiologic demonstration in familial fatal insomnia. Arch Neurol 65:545–549PubMedCrossRef
35.
go back to reference Hamaguchi T, Kitamoto T, Sato T, Mizusawa H, Nakamura Y, Noguchi M, Furukawa Y, Ishida C, Kuji I, Mitani K, Murayama S, Kohriyama T, Katayama S, Yamashita M, Yamamoto T, Udaka F, Kawakami A, Ihara Y, Nishinaka T, Kuroda S, Suzuki N, Shiga Y, Arai H, Maruyama M, Yamada M (2005) Clinical diagnosis of MM2-type sporadic Creutzfeldt–Jakob disease. Neurology 64:643–648PubMed Hamaguchi T, Kitamoto T, Sato T, Mizusawa H, Nakamura Y, Noguchi M, Furukawa Y, Ishida C, Kuji I, Mitani K, Murayama S, Kohriyama T, Katayama S, Yamashita M, Yamamoto T, Udaka F, Kawakami A, Ihara Y, Nishinaka T, Kuroda S, Suzuki N, Shiga Y, Arai H, Maruyama M, Yamada M (2005) Clinical diagnosis of MM2-type sporadic Creutzfeldt–Jakob disease. Neurology 64:643–648PubMed
36.
go back to reference Head MW, Bunn TJ, Bishop MT, McLoughlin V, Lowrie S, McKimmie CS, Williams MC, McCardle L, MacKenzie J, Knight R, Will RG, Ironside JW (2004) Prion protein heterogeneity in sporadic but not variant Creutzfeldt–Jakob disease: UK cases 1991–2002. Ann Neurol 55:851–859PubMedCrossRef Head MW, Bunn TJ, Bishop MT, McLoughlin V, Lowrie S, McKimmie CS, Williams MC, McCardle L, MacKenzie J, Knight R, Will RG, Ironside JW (2004) Prion protein heterogeneity in sporadic but not variant Creutzfeldt–Jakob disease: UK cases 1991–2002. Ann Neurol 55:851–859PubMedCrossRef
37.
go back to reference Head MW, Ironside JW (2009) Sporadic Creutzfeldt–Jakob disease: discrete subtypes or a spectrum of disease? Brain 132:2627–2629PubMedCrossRef Head MW, Ironside JW (2009) Sporadic Creutzfeldt–Jakob disease: discrete subtypes or a spectrum of disease? Brain 132:2627–2629PubMedCrossRef
38.
go back to reference Heidenhain A (1929) Klinische und anatomische Untersuchungen über eine eigenartige organische Erkrankung des Zentralnervensystems im Praesenium. Z Ges Neurol Psychiatr 118:49–114CrossRef Heidenhain A (1929) Klinische und anatomische Untersuchungen über eine eigenartige organische Erkrankung des Zentralnervensystems im Praesenium. Z Ges Neurol Psychiatr 118:49–114CrossRef
39.
go back to reference Herms J, Tings T, Gall S, Madlung A, Giese A, Siebert H, Schurmann P, Windl O, Brose N, Kretzschmar H (1999) Evidence of presynaptic location and function of the prion protein. J Neurosci 19:8866–8875PubMed Herms J, Tings T, Gall S, Madlung A, Giese A, Siebert H, Schurmann P, Windl O, Brose N, Kretzschmar H (1999) Evidence of presynaptic location and function of the prion protein. J Neurosci 19:8866–8875PubMed
40.
go back to reference Hill AF, Desbruslais M, Joiner S, Sidle KC, Gowland I, Collinge J, Doey LJ, Lantos P (1997) The same prion strain causes vCJD and BSE. Nature 389:448–450, 526 Hill AF, Desbruslais M, Joiner S, Sidle KC, Gowland I, Collinge J, Doey LJ, Lantos P (1997) The same prion strain causes vCJD and BSE. Nature 389:448–450, 526
41.
go back to reference Hill AF, Joiner S, Beck JA, Campbell TA, Dickinson A, Poulter M, Wadsworth JD, Collinge J (2006) Distinct glycoform ratios of protease resistant prion protein associated with PRNP point mutations. Brain 129:676–685PubMedCrossRef Hill AF, Joiner S, Beck JA, Campbell TA, Dickinson A, Poulter M, Wadsworth JD, Collinge J (2006) Distinct glycoform ratios of protease resistant prion protein associated with PRNP point mutations. Brain 129:676–685PubMedCrossRef
42.
go back to reference Hornshaw MP, McDermott JR, Candy JM, Lakey JH (1995) Copper binding to the N-terminal tandem repeat region of mammalian and avian prion protein: structural studies using synthetic peptides. Biochem Biophys Res Commun 214:993–999PubMedCrossRef Hornshaw MP, McDermott JR, Candy JM, Lakey JH (1995) Copper binding to the N-terminal tandem repeat region of mammalian and avian prion protein: structural studies using synthetic peptides. Biochem Biophys Res Commun 214:993–999PubMedCrossRef
43.
go back to reference Hsiao K, Dlouhy SR, Farlow MR, Cass C, Da Costa M, Conneally PM, Hodes ME, Ghetti B, Prusiner SB (1992) Mutant prion proteins in Gerstmann-Straussler-Scheinker disease with neurofibrillary tangles. Nat Genet 1:68–71PubMedCrossRef Hsiao K, Dlouhy SR, Farlow MR, Cass C, Da Costa M, Conneally PM, Hodes ME, Ghetti B, Prusiner SB (1992) Mutant prion proteins in Gerstmann-Straussler-Scheinker disease with neurofibrillary tangles. Nat Genet 1:68–71PubMedCrossRef
44.
go back to reference Jakob A (1921) Über eigenartige Erkrankungen des Zentralnervensystems mit bemerkenswertem anatomischem Befunde (spastische Pseurosklerose-Encephalomyelopathie mit disseminierten Degenerationsherden). Dtsch Z Nervenheilkd 70:132–146 Jakob A (1921) Über eigenartige Erkrankungen des Zentralnervensystems mit bemerkenswertem anatomischem Befunde (spastische Pseurosklerose-Encephalomyelopathie mit disseminierten Degenerationsherden). Dtsch Z Nervenheilkd 70:132–146
45.
go back to reference Jellinger K, Heiss WD, Deisenhammer E (1974) The ataxic (cerebellar) form of Creutzfeldt–Jakob disease. J Neurol 207:289–305PubMedCrossRef Jellinger K, Heiss WD, Deisenhammer E (1974) The ataxic (cerebellar) form of Creutzfeldt–Jakob disease. J Neurol 207:289–305PubMedCrossRef
46.
go back to reference Jeong BH, Nam JH, Lee YJ, Lee KH, Jang MK, Carp RI, Lee HD, Ju YR, Ahn Jo S, Park KY, Kim YS (2004) Polymorphisms of the prion protein gene (PRNP) in a Korean population. J Hum Genet 49:319–324PubMedCrossRef Jeong BH, Nam JH, Lee YJ, Lee KH, Jang MK, Carp RI, Lee HD, Ju YR, Ahn Jo S, Park KY, Kim YS (2004) Polymorphisms of the prion protein gene (PRNP) in a Korean population. J Hum Genet 49:319–324PubMedCrossRef
47.
go back to reference Jones HR Jr, Hedley-Whyte ET, Freidberg SR, Baker RA (1985) Ataxic Creutzfeldt–Jakob disease: diagnostic techniques and neuropathologic observations in early disease. Neurology 35:254–257PubMed Jones HR Jr, Hedley-Whyte ET, Freidberg SR, Baker RA (1985) Ataxic Creutzfeldt–Jakob disease: diagnostic techniques and neuropathologic observations in early disease. Neurology 35:254–257PubMed
48.
go back to reference Kitamoto T, Mohri S, Ironside JW, Miyoshi I, Tanaka T, Kitamoto N, Itohara S, Kasai N, Katsuki M, Higuchi J, Muramoto T, Shin RW (2002) Follicular dendritic cell of the knock-in mouse provides a new bioassay for human prions. Biochem Biophys Res Commun 294:280–286PubMedCrossRef Kitamoto T, Mohri S, Ironside JW, Miyoshi I, Tanaka T, Kitamoto N, Itohara S, Kasai N, Katsuki M, Higuchi J, Muramoto T, Shin RW (2002) Follicular dendritic cell of the knock-in mouse provides a new bioassay for human prions. Biochem Biophys Res Commun 294:280–286PubMedCrossRef
49.
go back to reference Kitamoto T, Ogomori K, Tateishi J, Prusiner SB (1987) Formic acid pretreatment enhances immunostaining of cerebral and systemic amyloids. Lab Invest 57:230–236PubMed Kitamoto T, Ogomori K, Tateishi J, Prusiner SB (1987) Formic acid pretreatment enhances immunostaining of cerebral and systemic amyloids. Lab Invest 57:230–236PubMed
50.
go back to reference Kitamoto T, Shin RW, Doh-ura K, Tomokane N, Miyazono M, Muramoto T, Tateishi J (1992) Abnormal isoform of prion proteins accumulates in the synaptic structures of the central nervous system in patients with Creutzfeldt–Jakob disease. Am J Pathol 140:1285–1294PubMed Kitamoto T, Shin RW, Doh-ura K, Tomokane N, Miyazono M, Muramoto T, Tateishi J (1992) Abnormal isoform of prion proteins accumulates in the synaptic structures of the central nervous system in patients with Creutzfeldt–Jakob disease. Am J Pathol 140:1285–1294PubMed
51.
go back to reference Kitamoto T, Tateishi J (1994) Human prion diseases with variant prion protein. Philos Trans R Soc Lond B Biol Sci 343:391–398PubMedCrossRef Kitamoto T, Tateishi J (1994) Human prion diseases with variant prion protein. Philos Trans R Soc Lond B Biol Sci 343:391–398PubMedCrossRef
52.
go back to reference Kobayashi A, Arima K, Ogawa M, Murata M, Fukuda T, Kitamoto T (2008) Plaque-type deposition of prion protein in the damaged white matter of sporadic Creutzfeldt–Jakob disease MM1 patients. Acta Neuropathol 116:561–566PubMedCrossRef Kobayashi A, Arima K, Ogawa M, Murata M, Fukuda T, Kitamoto T (2008) Plaque-type deposition of prion protein in the damaged white matter of sporadic Creutzfeldt–Jakob disease MM1 patients. Acta Neuropathol 116:561–566PubMedCrossRef
53.
go back to reference Kobayashi A, Sakuma N, Matsuura Y, Mohri S, Aguzzi A, Kitamoto T (2010) Experimental verification of a traceback phenomenon in prion infection. J Virol 84:3230–3238PubMedCrossRef Kobayashi A, Sakuma N, Matsuura Y, Mohri S, Aguzzi A, Kitamoto T (2010) Experimental verification of a traceback phenomenon in prion infection. J Virol 84:3230–3238PubMedCrossRef
54.
go back to reference Kobayashi A, Satoh S, Ironside JW, Mohri S, Kitamoto T (2005) Type 1 and type 2 human PrPSc have different aggregation sizes in methionine homozygotes with sporadic, iatrogenic and variant Creutzfeldt–Jakob disease. J Gen Virol 86:237–240PubMedCrossRef Kobayashi A, Satoh S, Ironside JW, Mohri S, Kitamoto T (2005) Type 1 and type 2 human PrPSc have different aggregation sizes in methionine homozygotes with sporadic, iatrogenic and variant Creutzfeldt–Jakob disease. J Gen Virol 86:237–240PubMedCrossRef
55.
go back to reference Korth C, Kaneko K, Groth D, Heye N, Telling G, Mastrianni J, Parchi P, Gambetti P, Will R, Ironside J, Heinrich C, Tremblay P, DeArmond SJ, Prusiner SB (2003) Abbreviated incubation times for human prions in mice expressing a chimeric mouse–human prion protein transgene. Proc Natl Acad Sci USA 100:4784–4789PubMedCrossRef Korth C, Kaneko K, Groth D, Heye N, Telling G, Mastrianni J, Parchi P, Gambetti P, Will R, Ironside J, Heinrich C, Tremblay P, DeArmond SJ, Prusiner SB (2003) Abbreviated incubation times for human prions in mice expressing a chimeric mouse–human prion protein transgene. Proc Natl Acad Sci USA 100:4784–4789PubMedCrossRef
56.
go back to reference Kott E, Bornstein B, Sandbank U (1967) Ataxic form of Creutzfeldt–Jakob disease. Its relation to subacute spongiform encephalopathy. J Neurol Sci 5:107–113PubMedCrossRef Kott E, Bornstein B, Sandbank U (1967) Ataxic form of Creutzfeldt–Jakob disease. Its relation to subacute spongiform encephalopathy. J Neurol Sci 5:107–113PubMedCrossRef
57.
go back to reference Krebs B, Bader B, Klehmet J, Grasbon-Frodl E, Oertel WH, Zerr I, Stricker S, Zschenderlein R, Kretzschmar HA (2007) A novel subtype of Creutzfeldt–Jakob disease characterized by a small 6 kDa PrP fragment. Acta Neuropathol 114:195–199PubMedCrossRef Krebs B, Bader B, Klehmet J, Grasbon-Frodl E, Oertel WH, Zerr I, Stricker S, Zschenderlein R, Kretzschmar HA (2007) A novel subtype of Creutzfeldt–Jakob disease characterized by a small 6 kDa PrP fragment. Acta Neuropathol 114:195–199PubMedCrossRef
58.
go back to reference Kretzschmar HA, Prusiner SB, Stowring LE, DeArmond SJ (1986) Scrapie prion proteins are synthesized in neurons. Am J Pathol 122:1–5PubMed Kretzschmar HA, Prusiner SB, Stowring LE, DeArmond SJ (1986) Scrapie prion proteins are synthesized in neurons. Am J Pathol 122:1–5PubMed
59.
go back to reference Kretzschmar HA, Stowring LE, Westaway D, Stubblebine WH, Prusiner SB, Dearmond SJ (1986) Molecular cloning of a human prion protein cDNA. DNA 5:315–324PubMed Kretzschmar HA, Stowring LE, Westaway D, Stubblebine WH, Prusiner SB, Dearmond SJ (1986) Molecular cloning of a human prion protein cDNA. DNA 5:315–324PubMed
60.
go back to reference Krucke W, Beck E, Vitzthum HG (1973) Creutzfeldt–Jakob disease. Some unusual morphological features reminiscent of kuru. Z Neurol 206:1–24PubMedCrossRef Krucke W, Beck E, Vitzthum HG (1973) Creutzfeldt–Jakob disease. Some unusual morphological features reminiscent of kuru. Z Neurol 206:1–24PubMedCrossRef
61.
go back to reference Kuczius T, Koch R, Keyvani K, Karch H, Grassi J, Groschup MH (2007) Regional and phenotype heterogeneity of cellular prion proteins in the human brain. Eur J Neurosci 25:2649–2655PubMedCrossRef Kuczius T, Koch R, Keyvani K, Karch H, Grassi J, Groschup MH (2007) Regional and phenotype heterogeneity of cellular prion proteins in the human brain. Eur J Neurosci 25:2649–2655PubMedCrossRef
62.
go back to reference Laplanche JL, Delasnerie-Laupretre N, Brandel JP, Chatelain J, Beaudry P, Alperovitch A, Launay JM (1994) Molecular genetics of prion diseases in France. French Research Group on Epidemiology of Human Spongiform Encephalopathies. Neurology 44:2347–2351PubMed Laplanche JL, Delasnerie-Laupretre N, Brandel JP, Chatelain J, Beaudry P, Alperovitch A, Launay JM (1994) Molecular genetics of prion diseases in France. French Research Group on Epidemiology of Human Spongiform Encephalopathies. Neurology 44:2347–2351PubMed
63.
go back to reference Lasmezas CI, Fournier JG, Nouvel V, Boe H, Marce D, Lamoury F, Kopp N, Hauw JJ, Ironside J, Bruce M, Dormont D, Deslys JP (2001) Adaptation of the bovine spongiform encephalopathy agent to primates and comparison with Creutzfeldt–Jakob disease: implications for human health. Proc Natl Acad Sci USA 98:4142–4147PubMedCrossRef Lasmezas CI, Fournier JG, Nouvel V, Boe H, Marce D, Lamoury F, Kopp N, Hauw JJ, Ironside J, Bruce M, Dormont D, Deslys JP (2001) Adaptation of the bovine spongiform encephalopathy agent to primates and comparison with Creutzfeldt–Jakob disease: implications for human health. Proc Natl Acad Sci USA 98:4142–4147PubMedCrossRef
64.
go back to reference Legname G, Baskakov IV, Nguyen HO, Riesner D, Cohen FE, DeArmond SJ, Prusiner SB (2004) Synthetic mammalian prions. Science 305:673–676PubMedCrossRef Legname G, Baskakov IV, Nguyen HO, Riesner D, Cohen FE, DeArmond SJ, Prusiner SB (2004) Synthetic mammalian prions. Science 305:673–676PubMedCrossRef
65.
go back to reference Levavasseur E, Laffont-Proust I, Morain E, Faucheux BA, Privat N, Peoc’h K, Sazdovitch V, Brandel JP, Hauw JJ, Haik S (2008) Regulating factors of PrP glycosylation in Creutzfeldt–Jakob disease—implications for the dissemination and the diagnosis of human prion strains. PLoS One 3:e2786PubMedCrossRef Levavasseur E, Laffont-Proust I, Morain E, Faucheux BA, Privat N, Peoc’h K, Sazdovitch V, Brandel JP, Hauw JJ, Haik S (2008) Regulating factors of PrP glycosylation in Creutzfeldt–Jakob disease—implications for the dissemination and the diagnosis of human prion strains. PLoS One 3:e2786PubMedCrossRef
66.
go back to reference Lewis V, Hill AF, Klug GM, Boyd A, Masters CL, Collins SJ (2005) Australian sporadic CJD analysis supports endogenous determinants of molecular-clinical profiles. Neurology 65:113–118PubMedCrossRef Lewis V, Hill AF, Klug GM, Boyd A, Masters CL, Collins SJ (2005) Australian sporadic CJD analysis supports endogenous determinants of molecular-clinical profiles. Neurology 65:113–118PubMedCrossRef
67.
go back to reference Lodi R, Parchi P, Tonon C, Manners D, Capellari S, Strammiello R, Rinaldi R, Testa C, Malucelli E, Mostacci B, Rizzo G, Pierangeli G, Cortelli P, Montagna P, Barbiroli B (2009) Magnetic resonance diagnostic markers in clinically sporadic prion disease: a combined brain magnetic resonance imaging and spectroscopy study. Brain 132:2669–2679PubMedCrossRef Lodi R, Parchi P, Tonon C, Manners D, Capellari S, Strammiello R, Rinaldi R, Testa C, Malucelli E, Mostacci B, Rizzo G, Pierangeli G, Cortelli P, Montagna P, Barbiroli B (2009) Magnetic resonance diagnostic markers in clinically sporadic prion disease: a combined brain magnetic resonance imaging and spectroscopy study. Brain 132:2669–2679PubMedCrossRef
68.
go back to reference Manners DN, Parchi P, Tonon C, Capellari S, Strammiello R, Testa C, Tani G, Malucelli E, Spagnolo C, Cortelli P, Montagna P, Lodi R, Barbiroli B (2009) Pathologic correlates of diffusion MRI changes in Creutzfeldt–Jakob disease. Neurology 72:1425–1431PubMedCrossRef Manners DN, Parchi P, Tonon C, Capellari S, Strammiello R, Testa C, Tani G, Malucelli E, Spagnolo C, Cortelli P, Montagna P, Lodi R, Barbiroli B (2009) Pathologic correlates of diffusion MRI changes in Creutzfeldt–Jakob disease. Neurology 72:1425–1431PubMedCrossRef
69.
go back to reference Masters CL, Richardson EP Jr (1978) Subacute spongiform encephalopathy (Creutzfeldt–Jakob disease). The nature and progression of spongiform change. Brain 101:333–344PubMedCrossRef Masters CL, Richardson EP Jr (1978) Subacute spongiform encephalopathy (Creutzfeldt–Jakob disease). The nature and progression of spongiform change. Brain 101:333–344PubMedCrossRef
70.
go back to reference Mastrianni JA, Nixon R, Layzer R, Telling GC, Han D, DeArmond SJ, Prusiner SB (1999) Prion protein conformation in a patient with sporadic fatal insomnia. N Engl J Med 340:1630–1638PubMedCrossRef Mastrianni JA, Nixon R, Layzer R, Telling GC, Han D, DeArmond SJ, Prusiner SB (1999) Prion protein conformation in a patient with sporadic fatal insomnia. N Engl J Med 340:1630–1638PubMedCrossRef
71.
go back to reference McCormack JE, Baybutt HN, Everington D, Will RG, Ironside JW, Manson JC (2002) PRNP contains both intronic and upstream regulatory regions that may influence susceptibility to Creutzfeldt–Jakob Disease. Gene 288:139–146PubMedCrossRef McCormack JE, Baybutt HN, Everington D, Will RG, Ironside JW, Manson JC (2002) PRNP contains both intronic and upstream regulatory regions that may influence susceptibility to Creutzfeldt–Jakob Disease. Gene 288:139–146PubMedCrossRef
72.
go back to reference Mead S, Mahal SP, Beck J, Campbell T, Farrall M, Fisher E, Collinge J (2001) Sporadic—but not variant—Creutzfeldt–Jakob disease is associated with polymorphisms upstream of PRNP exon 1. Am J Hum Genet 69:1225–1235PubMedCrossRef Mead S, Mahal SP, Beck J, Campbell T, Farrall M, Fisher E, Collinge J (2001) Sporadic—but not variant—Creutzfeldt–Jakob disease is associated with polymorphisms upstream of PRNP exon 1. Am J Hum Genet 69:1225–1235PubMedCrossRef
73.
go back to reference Meissner B, Kallenberg K, Sanchez-Juan P, Collie D, Summers DM, Almonti S, Collins SJ, Smith P, Cras P, Jansen GH, Brandel JP, Coulthart MB, Roberts H, Van Everbroeck B, Galanaud D, Mellina V, Will RG, Zerr I (2009) MRI lesion profiles in sporadic Creutzfeldt–Jakob disease. Neurology 72:1994–2001PubMedCrossRef Meissner B, Kallenberg K, Sanchez-Juan P, Collie D, Summers DM, Almonti S, Collins SJ, Smith P, Cras P, Jansen GH, Brandel JP, Coulthart MB, Roberts H, Van Everbroeck B, Galanaud D, Mellina V, Will RG, Zerr I (2009) MRI lesion profiles in sporadic Creutzfeldt–Jakob disease. Neurology 72:1994–2001PubMedCrossRef
74.
go back to reference Meyer A, Leigh D, Bagg CE (1954) A rare presenile dementia associated with cortical blindness (Heidenhain’s syndrome). J Neurol Neurosurg Psychiatry 17:129–133PubMedCrossRef Meyer A, Leigh D, Bagg CE (1954) A rare presenile dementia associated with cortical blindness (Heidenhain’s syndrome). J Neurol Neurosurg Psychiatry 17:129–133PubMedCrossRef
75.
go back to reference Mitteregger G, Vosko M, Krebs B, Xiang W, Kohlmannsperger V, Nolting S, Hamann GF, Kretzschmar HA (2007) The role of the octarepeat region in neuroprotective function of the cellular prion protein. Brain Pathol 17:174–183PubMedCrossRef Mitteregger G, Vosko M, Krebs B, Xiang W, Kohlmannsperger V, Nolting S, Hamann GF, Kretzschmar HA (2007) The role of the octarepeat region in neuroprotective function of the cellular prion protein. Brain Pathol 17:174–183PubMedCrossRef
76.
go back to reference Miyazono M, Kitamoto T, Doh-ura K, Iwaki T, Tateishi J (1992) Creutzfeldt–Jakob disease with codon 129 polymorphism (valine): a comparative study of patients with codon 102 point mutation or without mutations. Acta Neuropathol 84:349–354PubMed Miyazono M, Kitamoto T, Doh-ura K, Iwaki T, Tateishi J (1992) Creutzfeldt–Jakob disease with codon 129 polymorphism (valine): a comparative study of patients with codon 102 point mutation or without mutations. Acta Neuropathol 84:349–354PubMed
77.
go back to reference Mizutani T, Okumura A, Oda M, Shiraki H (1981) Panencephalopathic type of Creutzfeldt–Jakob disease: primary involvement of the cerebral white matter. J Neurol Neurosurg Psychiatry 44:103–115PubMedCrossRef Mizutani T, Okumura A, Oda M, Shiraki H (1981) Panencephalopathic type of Creutzfeldt–Jakob disease: primary involvement of the cerebral white matter. J Neurol Neurosurg Psychiatry 44:103–115PubMedCrossRef
78.
go back to reference Monari L, Chen SG, Brown P, Parchi P, Petersen RB, Mikol J, Gray F, Cortelli P, Montagna P, Ghetti B et al (1994) Fatal familial insomnia and familial Creutzfeldt–Jakob disease: different prion proteins determined by a DNA polymorphism. Proc Natl Acad Sci USA 91:2839–2842PubMedCrossRef Monari L, Chen SG, Brown P, Parchi P, Petersen RB, Mikol J, Gray F, Cortelli P, Montagna P, Ghetti B et al (1994) Fatal familial insomnia and familial Creutzfeldt–Jakob disease: different prion proteins determined by a DNA polymorphism. Proc Natl Acad Sci USA 91:2839–2842PubMedCrossRef
79.
go back to reference Montagna P, Gambetti P, Cortelli P, Lugaresi E (2003) Familial and sporadic fatal insomnia. Lancet Neurol 2:167–176PubMedCrossRef Montagna P, Gambetti P, Cortelli P, Lugaresi E (2003) Familial and sporadic fatal insomnia. Lancet Neurol 2:167–176PubMedCrossRef
80.
go back to reference Moser M, Colello RJ, Pott U, Oesch B (1995) Developmental expression of the prion protein gene in glial cells. Neuron 14:509–517PubMedCrossRef Moser M, Colello RJ, Pott U, Oesch B (1995) Developmental expression of the prion protein gene in glial cells. Neuron 14:509–517PubMedCrossRef
81.
go back to reference Nevin S, Mc MW, Behrman S, Jones DP (1960) Subacute spongiform encephalopathy—a subacute form of encephalopathy attributable to vascular dysfunction (spongiform cerebral atrophy). Brain 83:519–564PubMedCrossRef Nevin S, Mc MW, Behrman S, Jones DP (1960) Subacute spongiform encephalopathy—a subacute form of encephalopathy attributable to vascular dysfunction (spongiform cerebral atrophy). Brain 83:519–564PubMedCrossRef
82.
go back to reference Nonno R, Di Bari MA, Cardone F, Vaccari G, Fazzi P, Dell’Omo G, Cartoni C, Ingrosso L, Boyle A, Galeno R, Sbriccoli M, Lipp HP, Bruce M, Pocchiari M, Agrimi U (2006) Efficient transmission and characterization of Creutzfeldt–Jakob disease strains in bank voles. PLoS Pathog 2:e12PubMedCrossRef Nonno R, Di Bari MA, Cardone F, Vaccari G, Fazzi P, Dell’Omo G, Cartoni C, Ingrosso L, Boyle A, Galeno R, Sbriccoli M, Lipp HP, Bruce M, Pocchiari M, Agrimi U (2006) Efficient transmission and characterization of Creutzfeldt–Jakob disease strains in bank voles. PLoS Pathog 2:e12PubMedCrossRef
83.
go back to reference Notari S, Capellari S, Giese A, Westner I, Baruzzi A, Ghetti B, Gambetti P, Kretzschmar HA, Parchi P (2004) Effects of different experimental conditions on the PrPSc core generated by protease digestion: implications for strain typing and molecular classification of CJD. J Biol Chem 279:16797–16804PubMedCrossRef Notari S, Capellari S, Giese A, Westner I, Baruzzi A, Ghetti B, Gambetti P, Kretzschmar HA, Parchi P (2004) Effects of different experimental conditions on the PrPSc core generated by protease digestion: implications for strain typing and molecular classification of CJD. J Biol Chem 279:16797–16804PubMedCrossRef
84.
go back to reference Notari S, Capellari S, Langeveld J, Giese A, Strammiello R, Gambetti P, Kretzschmar HA, Parchi P (2007) A refined method for molecular typing reveals that co-occurrence of PrP(Sc) types in Creutzfeldt–Jakob disease is not the rule. Lab Invest 87:1103–1112PubMedCrossRef Notari S, Capellari S, Langeveld J, Giese A, Strammiello R, Gambetti P, Kretzschmar HA, Parchi P (2007) A refined method for molecular typing reveals that co-occurrence of PrP(Sc) types in Creutzfeldt–Jakob disease is not the rule. Lab Invest 87:1103–1112PubMedCrossRef
85.
go back to reference Notari S, Strammiello R, Capellari S, Giese A, Cescatti M, Grassi J, Ghetti B, Langeveld JP, Zou WQ, Gambetti P, Kretzschmar HA, Parchi P (2008) Characterization of truncated forms of abnormal prion protein in Creutzfeldt–Jakob disease. J Biol Chem 283:30557–30565PubMedCrossRef Notari S, Strammiello R, Capellari S, Giese A, Cescatti M, Grassi J, Ghetti B, Langeveld JP, Zou WQ, Gambetti P, Kretzschmar HA, Parchi P (2008) Characterization of truncated forms of abnormal prion protein in Creutzfeldt–Jakob disease. J Biol Chem 283:30557–30565PubMedCrossRef
86.
go back to reference Palmer MS, Dryden AJ, Hughes JT, Collinge J (1991) Homozygous prion protein genotype predisposes to sporadic Creutzfeldt–Jakob disease. Nature 352:340–342PubMedCrossRef Palmer MS, Dryden AJ, Hughes JT, Collinge J (1991) Homozygous prion protein genotype predisposes to sporadic Creutzfeldt–Jakob disease. Nature 352:340–342PubMedCrossRef
87.
go back to reference Palmer MS, Mahal SP, Campbell TA, Hill AF, Sidle KC, Laplanche JL, Collinge J (1993) Deletions in the prion protein gene are not associated with CJD. Hum Mol Genet 2:541–544PubMedCrossRef Palmer MS, Mahal SP, Campbell TA, Hill AF, Sidle KC, Laplanche JL, Collinge J (1993) Deletions in the prion protein gene are not associated with CJD. Hum Mol Genet 2:541–544PubMedCrossRef
88.
go back to reference Pan KM, Baldwin M, Nguyen J, Gasset M, Serban A, Groth D, Mehlhorn I, Huang Z, Fletterick RJ, Cohen FE et al (1993) Conversion of alpha-helices into beta-sheets features in the formation of the scrapie prion proteins. Proc Natl Acad Sci USA 90:10962–10966PubMedCrossRef Pan KM, Baldwin M, Nguyen J, Gasset M, Serban A, Groth D, Mehlhorn I, Huang Z, Fletterick RJ, Cohen FE et al (1993) Conversion of alpha-helices into beta-sheets features in the formation of the scrapie prion proteins. Proc Natl Acad Sci USA 90:10962–10966PubMedCrossRef
89.
go back to reference Pan T, Colucci M, Wong BS, Li R, Liu T, Petersen RB, Chen S, Gambetti P, Sy MS (2001) Novel differences between two human prion strains revealed by two-dimensional gel electrophoresis. J Biol Chem 276:37284–37288PubMedCrossRef Pan T, Colucci M, Wong BS, Li R, Liu T, Petersen RB, Chen S, Gambetti P, Sy MS (2001) Novel differences between two human prion strains revealed by two-dimensional gel electrophoresis. J Biol Chem 276:37284–37288PubMedCrossRef
90.
go back to reference Parchi P, Capellari S, Chen SG, Petersen RB, Gambetti P, Kopp N, Brown P, Kitamoto T, Tateishi J, Giese A, Kretzschmar H (1997) Typing prion isoforms. Nature 386:232–234PubMedCrossRef Parchi P, Capellari S, Chen SG, Petersen RB, Gambetti P, Kopp N, Brown P, Kitamoto T, Tateishi J, Giese A, Kretzschmar H (1997) Typing prion isoforms. Nature 386:232–234PubMedCrossRef
91.
go back to reference Parchi P, Castellani R, Capellari S, Ghetti B, Young K, Chen SG, Farlow M, Dickson DW, Sima AA, Trojanowski JQ, Petersen RB, Gambetti P (1996) Molecular basis of phenotypic variability in sporadic Creutzfeldt–Jakob disease. Ann Neurol 39:767–778PubMedCrossRef Parchi P, Castellani R, Capellari S, Ghetti B, Young K, Chen SG, Farlow M, Dickson DW, Sima AA, Trojanowski JQ, Petersen RB, Gambetti P (1996) Molecular basis of phenotypic variability in sporadic Creutzfeldt–Jakob disease. Ann Neurol 39:767–778PubMedCrossRef
92.
go back to reference Parchi P, Cescatti M, Notari S, Schulz-Schaeffer WJ, Capellari S, Giese A, Zou WQ, Kretzschmar H, Ghetti B, Brown P (2010) Agent strain variation in human prion disease: insights from a molecular and pathological review of the National Institutes of Health series of experimentally transmitted disease. Brain 133:3030–3042PubMedCrossRef Parchi P, Cescatti M, Notari S, Schulz-Schaeffer WJ, Capellari S, Giese A, Zou WQ, Kretzschmar H, Ghetti B, Brown P (2010) Agent strain variation in human prion disease: insights from a molecular and pathological review of the National Institutes of Health series of experimentally transmitted disease. Brain 133:3030–3042PubMedCrossRef
93.
go back to reference Parchi P, Chen SG, Brown P, Zou W, Capellari S, Budka H, Hainfellner J, Reyes PF, Golden GT, Hauw JJ, Gajdusek DC, Gambetti P (1998) Different patterns of truncated prion protein fragments correlate with distinct phenotypes in P102L Gerstmann-Straussler-Scheinker disease. Proc Natl Acad Sci USA 95:8322–8327PubMedCrossRef Parchi P, Chen SG, Brown P, Zou W, Capellari S, Budka H, Hainfellner J, Reyes PF, Golden GT, Hauw JJ, Gajdusek DC, Gambetti P (1998) Different patterns of truncated prion protein fragments correlate with distinct phenotypes in P102L Gerstmann-Straussler-Scheinker disease. Proc Natl Acad Sci USA 95:8322–8327PubMedCrossRef
94.
go back to reference Parchi P, Giese A, Capellari S, Brown P, Schulz-Schaeffer W, Windl O, Zerr I, Budka H, Kopp N, Piccardo P, Poser S, Rojiani A, Streichemberger N, Julien J, Vital C, Ghetti B, Gambetti P, Kretzschmar H (1999) Classification of sporadic Creutzfeldt–Jakob disease based on molecular and phenotypic analysis of 300 subjects. Ann Neurol 46:224–233PubMedCrossRef Parchi P, Giese A, Capellari S, Brown P, Schulz-Schaeffer W, Windl O, Zerr I, Budka H, Kopp N, Piccardo P, Poser S, Rojiani A, Streichemberger N, Julien J, Vital C, Ghetti B, Gambetti P, Kretzschmar H (1999) Classification of sporadic Creutzfeldt–Jakob disease based on molecular and phenotypic analysis of 300 subjects. Ann Neurol 46:224–233PubMedCrossRef
95.
go back to reference Parchi P, Notari S, Weber P, Schimmel H, Budka H, Ferrer I, Haik S, Hauw JJ, Head MW, Ironside JW, Limido L, Rodriguez A, Strobel T, Tagliavini F, Kretzschmar HA (2009) Inter-laboratory assessment of PrPSc typing in Creutzfeldt–Jakob disease: a Western blot study within the NeuroPrion Consortium. Brain Pathol 19:384–391PubMedCrossRef Parchi P, Notari S, Weber P, Schimmel H, Budka H, Ferrer I, Haik S, Hauw JJ, Head MW, Ironside JW, Limido L, Rodriguez A, Strobel T, Tagliavini F, Kretzschmar HA (2009) Inter-laboratory assessment of PrPSc typing in Creutzfeldt–Jakob disease: a Western blot study within the NeuroPrion Consortium. Brain Pathol 19:384–391PubMedCrossRef
96.
go back to reference Parchi P, Strammiello R, Notari S, Giese A, Langeveld JP, Ladogana A, Zerr I, Roncaroli F, Cras P, Ghetti B, Pocchiari M, Kretzschmar H, Capellari S (2009) Incidence and spectrum of sporadic Creutzfeldt–Jakob disease variants with mixed phenotype and co-occurrence of PrPSc types: an updated classification. Acta Neuropathol 118:659–671PubMedCrossRef Parchi P, Strammiello R, Notari S, Giese A, Langeveld JP, Ladogana A, Zerr I, Roncaroli F, Cras P, Ghetti B, Pocchiari M, Kretzschmar H, Capellari S (2009) Incidence and spectrum of sporadic Creutzfeldt–Jakob disease variants with mixed phenotype and co-occurrence of PrPSc types: an updated classification. Acta Neuropathol 118:659–671PubMedCrossRef
97.
go back to reference Parchi P, Zou W, Wang W, Brown P, Capellari S, Ghetti B, Kopp N, Schulz-Schaeffer WJ, Kretzschmar HA, Head MW, Ironside JW, Gambetti P, Chen SG (2000) Genetic influence on the structural variations of the abnormal prion protein. Proc Natl Acad Sci USA 97:10168–10172PubMedCrossRef Parchi P, Zou W, Wang W, Brown P, Capellari S, Ghetti B, Kopp N, Schulz-Schaeffer WJ, Kretzschmar HA, Head MW, Ironside JW, Gambetti P, Chen SG (2000) Genetic influence on the structural variations of the abnormal prion protein. Proc Natl Acad Sci USA 97:10168–10172PubMedCrossRef
98.
go back to reference Park TS, Kleinman GM, Richardson EP (1980) Creutzfeldt–Jakob disease with extensive degeneration of white matter. Acta Neuropathol 52:239–242PubMedCrossRef Park TS, Kleinman GM, Richardson EP (1980) Creutzfeldt–Jakob disease with extensive degeneration of white matter. Acta Neuropathol 52:239–242PubMedCrossRef
99.
go back to reference Peretz D, Scott MR, Groth D, Williamson RA, Burton DR, Cohen FE, Prusiner SB (2001) Strain-specified relative conformational stability of the scrapie prion protein. Protein Sci 10:854–863PubMedCrossRef Peretz D, Scott MR, Groth D, Williamson RA, Burton DR, Cohen FE, Prusiner SB (2001) Strain-specified relative conformational stability of the scrapie prion protein. Protein Sci 10:854–863PubMedCrossRef
100.
go back to reference Petersen RB, Parchi P, Richardson SL, Urig CB, Gambetti P (1996) Effect of the D178N mutation and the codon 129 polymorphism on the metabolism of the prion protein. J Biol Chem 271:12661–12668PubMedCrossRef Petersen RB, Parchi P, Richardson SL, Urig CB, Gambetti P (1996) Effect of the D178N mutation and the codon 129 polymorphism on the metabolism of the prion protein. J Biol Chem 271:12661–12668PubMedCrossRef
101.
go back to reference Piccardo P, Dlouhy SR, Lievens PM, Young K, Bird TD, Nochlin D, Dickson DW, Vinters HV, Zimmerman TR, Mackenzie IR, Kish SJ, Ang LC, De Carli C, Pocchiari M, Brown P, Gibbs CJ Jr, Gajdusek DC, Bugiani O, Ironside J, Tagliavini F, Ghetti B (1998) Phenotypic variability of Gerstmann-Straussler-Scheinker disease is associated with prion protein heterogeneity. J Neuropathol Exp Neurol 57:979–988PubMedCrossRef Piccardo P, Dlouhy SR, Lievens PM, Young K, Bird TD, Nochlin D, Dickson DW, Vinters HV, Zimmerman TR, Mackenzie IR, Kish SJ, Ang LC, De Carli C, Pocchiari M, Brown P, Gibbs CJ Jr, Gajdusek DC, Bugiani O, Ironside J, Tagliavini F, Ghetti B (1998) Phenotypic variability of Gerstmann-Straussler-Scheinker disease is associated with prion protein heterogeneity. J Neuropathol Exp Neurol 57:979–988PubMedCrossRef
102.
go back to reference Piro JR, Harris BT, Nishina K, Soto C, Morales R, Rees JR, Supattapone S (2009) Prion protein glycosylation is not required for strain-specific neurotropism. J Virol 83:5321–5328PubMedCrossRef Piro JR, Harris BT, Nishina K, Soto C, Morales R, Rees JR, Supattapone S (2009) Prion protein glycosylation is not required for strain-specific neurotropism. J Virol 83:5321–5328PubMedCrossRef
103.
go back to reference Polymenidou M, Stoeck K, Glatzel M, Vey M, Bellon A, Aguzzi A (2005) Coexistence of multiple PrPSc types in individuals with Creutzfeldt–Jakob disease. Lancet Neurol 4:805–814PubMedCrossRef Polymenidou M, Stoeck K, Glatzel M, Vey M, Bellon A, Aguzzi A (2005) Coexistence of multiple PrPSc types in individuals with Creutzfeldt–Jakob disease. Lancet Neurol 4:805–814PubMedCrossRef
105.
go back to reference Puoti G, Giaccone G, Rossi G, Canciani B, Bugiani O, Tagliavini F (1999) Sporadic Creutzfeldt–Jakob disease: co-occurrence of different types of PrP(Sc) in the same brain. Neurology 53:2173–2176PubMed Puoti G, Giaccone G, Rossi G, Canciani B, Bugiani O, Tagliavini F (1999) Sporadic Creutzfeldt–Jakob disease: co-occurrence of different types of PrP(Sc) in the same brain. Neurology 53:2173–2176PubMed
106.
go back to reference Riek R, Hornemann S, Wider G, Billeter M, Glockshuber R, Wuthrich K (1996) NMR structure of the mouse prion protein domain PrP(121-321). Nature 382:180–182PubMedCrossRef Riek R, Hornemann S, Wider G, Billeter M, Glockshuber R, Wuthrich K (1996) NMR structure of the mouse prion protein domain PrP(121-321). Nature 382:180–182PubMedCrossRef
107.
go back to reference Safar J, Wille H, Itri V, Groth D, Serban H, Torchia M, Cohen FE, Prusiner SB (1998) Eight prion strains have PrP(Sc) molecules with different conformations. Nat Med 4:1157–1165PubMedCrossRef Safar J, Wille H, Itri V, Groth D, Serban H, Torchia M, Cohen FE, Prusiner SB (1998) Eight prion strains have PrP(Sc) molecules with different conformations. Nat Med 4:1157–1165PubMedCrossRef
108.
go back to reference Salvatore M, Genuardi M, Petraroli R, Masullo C, D’Alessandro M, Pocchiari M (1994) Polymorphisms of the prion protein gene in Italian patients with Creutzfeldt–Jakob disease. Hum Genet 94:375–379PubMedCrossRef Salvatore M, Genuardi M, Petraroli R, Masullo C, D’Alessandro M, Pocchiari M (1994) Polymorphisms of the prion protein gene in Italian patients with Creutzfeldt–Jakob disease. Hum Genet 94:375–379PubMedCrossRef
109.
go back to reference Sanchez-Juan P, Green A, Ladogana A, Cuadrado-Corrales N, Saanchez-Valle R, Mitrovaa E, Stoeck K, Sklaviadis T, Kulczycki J, Hess K, Bodemer M, Slivarichova D, Saiz A, Calero M, Ingrosso L, Knight R, Janssens AC, van Duijn CM, Zerr I (2006) CSF tests in the differential diagnosis of Creutzfeldt–Jakob disease. Neurology 67:637–643PubMedCrossRef Sanchez-Juan P, Green A, Ladogana A, Cuadrado-Corrales N, Saanchez-Valle R, Mitrovaa E, Stoeck K, Sklaviadis T, Kulczycki J, Hess K, Bodemer M, Slivarichova D, Saiz A, Calero M, Ingrosso L, Knight R, Janssens AC, van Duijn CM, Zerr I (2006) CSF tests in the differential diagnosis of Creutzfeldt–Jakob disease. Neurology 67:637–643PubMedCrossRef
110.
go back to reference Schoch G, Seeger H, Bogousslavsky J, Tolnay M, Janzer RC, Aguzzi A, Glatzel M (2006) Analysis of prion strains by PrPSc profiling in sporadic Creutzfeldt–Jakob disease. PLoS Med 3:e14PubMedCrossRef Schoch G, Seeger H, Bogousslavsky J, Tolnay M, Janzer RC, Aguzzi A, Glatzel M (2006) Analysis of prion strains by PrPSc profiling in sporadic Creutzfeldt–Jakob disease. PLoS Med 3:e14PubMedCrossRef
111.
go back to reference Schoene WC, Masters CL, Gibbs CJ Jr, Gajdusek DC, Tyler HR, Moore FD, Dammin GJ (1981) Transmissible spongiform encephalopathy (Creutzfeldt–Jakob disease). Atypical clinical and pathological findings. Arch Neurol 38:473–477PubMed Schoene WC, Masters CL, Gibbs CJ Jr, Gajdusek DC, Tyler HR, Moore FD, Dammin GJ (1981) Transmissible spongiform encephalopathy (Creutzfeldt–Jakob disease). Atypical clinical and pathological findings. Arch Neurol 38:473–477PubMed
112.
go back to reference Schulman S (1957) Bilateral symmetrical degeneration of the thalamus: a clinicopathological study. J Neuropathol Exp Neurol 16:446–470PubMedCrossRef Schulman S (1957) Bilateral symmetrical degeneration of the thalamus: a clinicopathological study. J Neuropathol Exp Neurol 16:446–470PubMedCrossRef
113.
go back to reference Schulz-Schaeffer WJ, Giese A, Windl O, Kretzschmar HA (1996) Polymorphism at codon 129 of the prion protein gene determines cerebellar pathology in Creutzfeldt–Jakob disease. Clin Neuropathol 15:353–357PubMed Schulz-Schaeffer WJ, Giese A, Windl O, Kretzschmar HA (1996) Polymorphism at codon 129 of the prion protein gene determines cerebellar pathology in Creutzfeldt–Jakob disease. Clin Neuropathol 15:353–357PubMed
114.
go back to reference Schulz-Schaeffer WJ, Tschoke S, Kranefuss N, Drose W, Hause-Reitner D, Giese A, Groschup MH, Kretzschmar HA (2000) The paraffin-embedded tissue blot detects PrP(Sc) early in the incubation time in prion diseases. Am J Pathol 156:51–56PubMed Schulz-Schaeffer WJ, Tschoke S, Kranefuss N, Drose W, Hause-Reitner D, Giese A, Groschup MH, Kretzschmar HA (2000) The paraffin-embedded tissue blot detects PrP(Sc) early in the incubation time in prion diseases. Am J Pathol 156:51–56PubMed
115.
go back to reference Shibuya S, Higuchi J, Shin RW, Tateishi J, Kitamoto T (1998) Protective prion protein polymorphisms against sporadic Creutzfeldt–Jakob disease. Lancet 351:419PubMedCrossRef Shibuya S, Higuchi J, Shin RW, Tateishi J, Kitamoto T (1998) Protective prion protein polymorphisms against sporadic Creutzfeldt–Jakob disease. Lancet 351:419PubMedCrossRef
116.
go back to reference Somerville RA, Hamilton S, Fernie K (2005) Transmissible spongiform encephalopathy strain, PrP genotype and brain region all affect the degree of glycosylation of PrPSc. J Gen Virol 86:241–246PubMedCrossRef Somerville RA, Hamilton S, Fernie K (2005) Transmissible spongiform encephalopathy strain, PrP genotype and brain region all affect the degree of glycosylation of PrPSc. J Gen Virol 86:241–246PubMedCrossRef
117.
go back to reference Stack MJ, Chaplin MJ, Clark J (2002) Differentiation of prion protein glycoforms from naturally occurring sheep scrapie, sheep-passaged scrapie strains (CH1641 and SSBP1), bovine spongiform encephalopathy (BSE) cases and Romney and Cheviot breed sheep experimentally inoculated with BSE using two monoclonal antibodies. Acta Neuropathol 104:279–286PubMed Stack MJ, Chaplin MJ, Clark J (2002) Differentiation of prion protein glycoforms from naturally occurring sheep scrapie, sheep-passaged scrapie strains (CH1641 and SSBP1), bovine spongiform encephalopathy (BSE) cases and Romney and Cheviot breed sheep experimentally inoculated with BSE using two monoclonal antibodies. Acta Neuropathol 104:279–286PubMed
118.
go back to reference Stahl N, Baldwin MA, Hecker R, Pan KM, Burlingame AL, Prusiner SB (1992) Glycosylinositol phospholipid anchors of the scrapie and cellular prion proteins contain sialic acid. Biochemistry 31:5043–5053PubMedCrossRef Stahl N, Baldwin MA, Hecker R, Pan KM, Burlingame AL, Prusiner SB (1992) Glycosylinositol phospholipid anchors of the scrapie and cellular prion proteins contain sialic acid. Biochemistry 31:5043–5053PubMedCrossRef
119.
go back to reference Stern K (1939) Severe dementia associated with bilateral symmetrical degeneration of the thalamus. Brain 62:157–171CrossRef Stern K (1939) Severe dementia associated with bilateral symmetrical degeneration of the thalamus. Brain 62:157–171CrossRef
120.
go back to reference Stimson E, Hope J, Chong A, Burlingame AL (1999) Site-specific characterization of the N-linked glycans of murine prion protein by high-performance liquid chromatography/electrospray mass spectrometry and exoglycosidase digestions. Biochemistry 38:4885–4895PubMedCrossRef Stimson E, Hope J, Chong A, Burlingame AL (1999) Site-specific characterization of the N-linked glycans of murine prion protein by high-performance liquid chromatography/electrospray mass spectrometry and exoglycosidase digestions. Biochemistry 38:4885–4895PubMedCrossRef
121.
go back to reference Tagliavini F, Prelli F, Ghiso J, Bugiani O, Serban D, Prusiner SB, Farlow MR, Ghetti B, Frangione B (1991) Amyloid protein of Gerstmann-Straussler-Scheinker disease (Indiana kindred) is an 11 kDa fragment of prion protein with an N-terminal glycine at codon 58. EMBO J 10:513–519PubMed Tagliavini F, Prelli F, Ghiso J, Bugiani O, Serban D, Prusiner SB, Farlow MR, Ghetti B, Frangione B (1991) Amyloid protein of Gerstmann-Straussler-Scheinker disease (Indiana kindred) is an 11 kDa fragment of prion protein with an N-terminal glycine at codon 58. EMBO J 10:513–519PubMed
122.
go back to reference Thackray AM, Hopkins L, Klein MA, Bujdoso R (2007) Mouse-adapted ovine scrapie prion strains are characterized by different conformers of PrPSc. J Virol 81:12119–12127PubMedCrossRef Thackray AM, Hopkins L, Klein MA, Bujdoso R (2007) Mouse-adapted ovine scrapie prion strains are characterized by different conformers of PrPSc. J Virol 81:12119–12127PubMedCrossRef
123.
go back to reference Tixador P, Herzog L, Reine F, Jaumain E, Chapuis J, Le Dur A, Laude H, Beringue V (2010) The physical relationship between infectivity and prion protein aggregates is strain-dependent. PLoS Pathog 6:e1000859PubMedCrossRef Tixador P, Herzog L, Reine F, Jaumain E, Chapuis J, Le Dur A, Laude H, Beringue V (2010) The physical relationship between infectivity and prion protein aggregates is strain-dependent. PLoS Pathog 6:e1000859PubMedCrossRef
124.
go back to reference Uro-Coste E, Cassard H, Simon S, Lugan S, Bilheude JM, Perret-Liaudet A, Ironside JW, Haik S, Basset-Leobon C, Lacroux C, Peoch K, Streichenberger N, Langeveld J, Head MW, Grassi J, Hauw JJ, Schelcher F, Delisle MB, Andreoletti O (2008) Beyond PrP res type 1/type 2 dichotomy in Creutzfeldt–Jakob disease. PLoS Pathog 4:e1000029CrossRef Uro-Coste E, Cassard H, Simon S, Lugan S, Bilheude JM, Perret-Liaudet A, Ironside JW, Haik S, Basset-Leobon C, Lacroux C, Peoch K, Streichenberger N, Langeveld J, Head MW, Grassi J, Hauw JJ, Schelcher F, Delisle MB, Andreoletti O (2008) Beyond PrP res type 1/type 2 dichotomy in Creutzfeldt–Jakob disease. PLoS Pathog 4:e1000029CrossRef
125.
go back to reference Van Rossum A (1968) Spastic pseudosclerosis (Creutzfeldt–Jakob disease). In: Vinken PJ, Bruyn GW (eds) Handbook of clinical neurology. North Holland, Amsterdam, pp 726–760 Van Rossum A (1968) Spastic pseudosclerosis (Creutzfeldt–Jakob disease). In: Vinken PJ, Bruyn GW (eds) Handbook of clinical neurology. North Holland, Amsterdam, pp 726–760
126.
go back to reference Wadsworth JD, Hill AF, Joiner S, Jackson GS, Clarke AR, Collinge J (1999) Strain-specific prion-protein conformation determined by metal ions. Nat Cell Biol 1:55–59PubMedCrossRef Wadsworth JD, Hill AF, Joiner S, Jackson GS, Clarke AR, Collinge J (1999) Strain-specific prion-protein conformation determined by metal ions. Nat Cell Biol 1:55–59PubMedCrossRef
127.
go back to reference Will RG, Matthews WB (1984) A retrospective study of Creutzfeldt–Jakob disease in England and Wales 1970–79. I. Clinical features. J Neurol Neurosurg Psychiatry 47:134–140PubMedCrossRef Will RG, Matthews WB (1984) A retrospective study of Creutzfeldt–Jakob disease in England and Wales 1970–79. I. Clinical features. J Neurol Neurosurg Psychiatry 47:134–140PubMedCrossRef
128.
go back to reference Williams A, Lucassen PJ, Ritchie D, Bruce M (1997) PrP deposition, microglial activation, and neuronal apoptosis in murine scrapie. Exp Neurol 144:433–438PubMedCrossRef Williams A, Lucassen PJ, Ritchie D, Bruce M (1997) PrP deposition, microglial activation, and neuronal apoptosis in murine scrapie. Exp Neurol 144:433–438PubMedCrossRef
129.
go back to reference Williams AE, Lawson LJ, Perry VH, Fraser H (1994) Characterization of the microglial response in murine scrapie. Neuropathol Appl Neurobiol 20:47–55PubMedCrossRef Williams AE, Lawson LJ, Perry VH, Fraser H (1994) Characterization of the microglial response in murine scrapie. Neuropathol Appl Neurobiol 20:47–55PubMedCrossRef
130.
go back to reference Windl O, Dempster M, Estibeiro JP, Lathe R, de Silva R, Esmonde T, Will R, Springbett A, Campbell TA, Sidle KC, Palmer MS, Collinge J (1996) Genetic basis of Creutzfeldt–Jakob disease in the United Kingdom: a systematic analysis of predisposing mutations and allelic variation in the PRNP gene. Hum Genet 98:259–264PubMedCrossRef Windl O, Dempster M, Estibeiro JP, Lathe R, de Silva R, Esmonde T, Will R, Springbett A, Campbell TA, Sidle KC, Palmer MS, Collinge J (1996) Genetic basis of Creutzfeldt–Jakob disease in the United Kingdom: a systematic analysis of predisposing mutations and allelic variation in the PRNP gene. Hum Genet 98:259–264PubMedCrossRef
131.
go back to reference Wu Y, Brown WT, Robakis NK, Dobkin C, Devine-Gage E, Merz P, Wisniewski HM (1987) A PvuII RFLP detected in the human prion protein (PrP) gene. Nucleic Acids Res 15:3191PubMedCrossRef Wu Y, Brown WT, Robakis NK, Dobkin C, Devine-Gage E, Merz P, Wisniewski HM (1987) A PvuII RFLP detected in the human prion protein (PrP) gene. Nucleic Acids Res 15:3191PubMedCrossRef
132.
go back to reference Yull HM, Ironside JW, Head MW (2009) Further characterisation of the prion protein molecular types detectable in the NIBSC Creutzfeldt–Jakob disease brain reference materials. Biologicals 37:210–215PubMedCrossRef Yull HM, Ironside JW, Head MW (2009) Further characterisation of the prion protein molecular types detectable in the NIBSC Creutzfeldt–Jakob disease brain reference materials. Biologicals 37:210–215PubMedCrossRef
133.
go back to reference Zanusso G, Farinazzo A, Fiorini M, Gelati M, Castagna A, Righetti PG, Rizzuto N, Monaco S (2001) pH-dependent prion protein conformation in classical Creutzfeldt–Jakob disease. J Biol Chem 276:40377–40380PubMedCrossRef Zanusso G, Farinazzo A, Fiorini M, Gelati M, Castagna A, Righetti PG, Rizzuto N, Monaco S (2001) pH-dependent prion protein conformation in classical Creutzfeldt–Jakob disease. J Biol Chem 276:40377–40380PubMedCrossRef
134.
go back to reference Zanusso G, Ferrari S, Conte S, Mellina V, Sacchi V, Rizzuto N, Monaco S (2006) A 49-year-old man with neuropsychiatric symptoms followed by progressive cognitive decline. Brain Pathol 16:237–238PubMedCrossRef Zanusso G, Ferrari S, Conte S, Mellina V, Sacchi V, Rizzuto N, Monaco S (2006) A 49-year-old man with neuropsychiatric symptoms followed by progressive cognitive decline. Brain Pathol 16:237–238PubMedCrossRef
135.
go back to reference Zeidler M, Sellar RJ, Collie DA, Knight R, Stewart G, Macleod MA, Ironside JW, Cousens S, Colchester AC, Hadley DM, Will RG (2000) The pulvinar sign on magnetic resonance imaging in variant Creutzfeldt–Jakob disease. Lancet 355:1412–1418PubMedCrossRef Zeidler M, Sellar RJ, Collie DA, Knight R, Stewart G, Macleod MA, Ironside JW, Cousens S, Colchester AC, Hadley DM, Will RG (2000) The pulvinar sign on magnetic resonance imaging in variant Creutzfeldt–Jakob disease. Lancet 355:1412–1418PubMedCrossRef
136.
go back to reference Zou WQ, Capellari S, Parchi P, Sy MS, Gambetti P, Chen SG (2003) Identification of novel proteinase K-resistant C-terminal fragments of PrP in Creutzfeldt–Jakob disease. J Biol Chem 278:40429–40436PubMedCrossRef Zou WQ, Capellari S, Parchi P, Sy MS, Gambetti P, Chen SG (2003) Identification of novel proteinase K-resistant C-terminal fragments of PrP in Creutzfeldt–Jakob disease. J Biol Chem 278:40429–40436PubMedCrossRef
137.
go back to reference Zou WQ, Puoti G, Xiao X, Yuan J, Qing L, Cali I, Shimoji M, Langeveld JP, Castellani R, Notari S, Crain B, Schmidt RE, Geschwind M, Dearmond SJ, Cairns NJ, Dickson D, Honig L, Torres JM, Mastrianni J, Capellari S, Giaccone G, Belay ED, Schonberger LB, Cohen M, Perry G, Kong Q, Parchi P, Tagliavini F, Gambetti P (2010) Variably protease-sensitive prionopathy: a new sporadic disease of the prion protein. Ann Neurol 68:162–172PubMedCrossRef Zou WQ, Puoti G, Xiao X, Yuan J, Qing L, Cali I, Shimoji M, Langeveld JP, Castellani R, Notari S, Crain B, Schmidt RE, Geschwind M, Dearmond SJ, Cairns NJ, Dickson D, Honig L, Torres JM, Mastrianni J, Capellari S, Giaccone G, Belay ED, Schonberger LB, Cohen M, Perry G, Kong Q, Parchi P, Tagliavini F, Gambetti P (2010) Variably protease-sensitive prionopathy: a new sporadic disease of the prion protein. Ann Neurol 68:162–172PubMedCrossRef
Metadata
Title
Phenotypic variability of sporadic human prion disease and its molecular basis: past, present, and future
Authors
Piero Parchi
Rosaria Strammiello
Armin Giese
Hans Kretzschmar
Publication date
01-01-2011
Publisher
Springer-Verlag
Published in
Acta Neuropathologica / Issue 1/2011
Print ISSN: 0001-6322
Electronic ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-010-0779-6

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