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Published in: Acta Neuropathologica 1/2013

Open Access 01-01-2013 | Review

Myosinopathies: pathology and mechanisms

Authors: Homa Tajsharghi, Anders Oldfors

Published in: Acta Neuropathologica | Issue 1/2013

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Abstract

The myosin heavy chain (MyHC) is the molecular motor of muscle and forms the backbone of the sarcomere thick filaments. Different MyHC isoforms are of importance for the physiological properties of different muscle fiber types. Hereditary myosin myopathies have emerged as an important group of diseases with variable clinical and morphological expression depending on the mutated isoform and type and location of the mutation. Dominant mutations in developmental MyHC isoform genes (MYH3 and MYH8) are associated with distal arthrogryposis syndromes. Dominant or recessive mutations affecting the type IIa MyHC (MYH2) are associated with early-onset myopathies with variable muscle weakness and ophthalmoplegia as a consistent finding. Myopathies with scapuloperoneal, distal or limb-girdle muscle weakness including entities, such as myosin storage myopathy and Laing distal myopathy are the result of usually dominant mutations in the gene for slow/β cardiac MyHC (MYH7). Protein aggregation is part of the features in some of these myopathies. In myosin storage myopathy protein aggregates are formed by accumulation of myosin beneath the sarcolemma and between myofibrils. In vitro studies on the effects of different mutations associated with myosin storage myopathy and Laing distal myopathy indicate altered biochemical and biophysical properties of the light meromyosin, which is essential for thick filament assembly. Protein aggregates in the form of tubulofilamentous inclusions in association with vacuolated muscle fibers are present at late stage of dominant myosin IIa myopathy and sometimes in Laing distal myopathy. These protein aggregates exhibit features indicating defective degradation of misfolded proteins. In addition to protein aggregation and muscle fiber degeneration some of the myosin mutations cause functional impairment of the molecular motor adding to the pathogenesis of myosinopathies.
Literature
1.
go back to reference Acakpo-Satchivi LJ, Edelmann W, Sartorius C, Lu BD, Wahr PA, Watkins SC, Metzger JM, Leinwand L, Kucherlapati R (1997) Growth and muscle defects in mice lacking adult myosin heavy chain genes. J Cell Biol 139:1219–1229PubMedCrossRef Acakpo-Satchivi LJ, Edelmann W, Sartorius C, Lu BD, Wahr PA, Watkins SC, Metzger JM, Leinwand L, Kucherlapati R (1997) Growth and muscle defects in mice lacking adult myosin heavy chain genes. J Cell Biol 139:1219–1229PubMedCrossRef
2.
go back to reference Allen DL, Harrison BC, Leinwand LA (2000) Inactivation of myosin heavy chain genes in the mouse: diverse and unexpected phenotypes. Microsc Res Tech 50:492–499PubMedCrossRef Allen DL, Harrison BC, Leinwand LA (2000) Inactivation of myosin heavy chain genes in the mouse: diverse and unexpected phenotypes. Microsc Res Tech 50:492–499PubMedCrossRef
3.
go back to reference Alvarado DM, Buchan JG, Gurnett CA, Dobbs MB (2011) Exome sequencing identifies an MYH3 mutation in a family with distal arthrogryposis type 1. J Bone Joint Surg Am 93:1045–1050PubMedCrossRef Alvarado DM, Buchan JG, Gurnett CA, Dobbs MB (2011) Exome sequencing identifies an MYH3 mutation in a family with distal arthrogryposis type 1. J Bone Joint Surg Am 93:1045–1050PubMedCrossRef
4.
go back to reference Armel TZ, Leinwand LA (2009) Mutations in the beta-myosin rod cause myosin storage myopathy via multiple mechanisms. Proc Natl Acad Sci USA 106:6291–6296PubMedCrossRef Armel TZ, Leinwand LA (2009) Mutations in the beta-myosin rod cause myosin storage myopathy via multiple mechanisms. Proc Natl Acad Sci USA 106:6291–6296PubMedCrossRef
5.
go back to reference Armel TZ, Leinwand LA (2010) Mutations at the same amino acid in myosin that cause either skeletal or cardiac myopathy have distinct molecular phenotypes. J Mol Cell Cardiol 48:1007–1013PubMedCrossRef Armel TZ, Leinwand LA (2010) Mutations at the same amino acid in myosin that cause either skeletal or cardiac myopathy have distinct molecular phenotypes. J Mol Cell Cardiol 48:1007–1013PubMedCrossRef
6.
go back to reference Askanas V, Engel WK (2011) Sporadic inclusion-body myositis: conformational multifactorial ageing-related degenerative muscle disease associated with proteasomal and lysosomal inhibition, endoplasmic reticulum stress, and accumulation of amyloid-beta42 oligomers and phosphorylated tau. Presse Med 40:e219–e235PubMedCrossRef Askanas V, Engel WK (2011) Sporadic inclusion-body myositis: conformational multifactorial ageing-related degenerative muscle disease associated with proteasomal and lysosomal inhibition, endoplasmic reticulum stress, and accumulation of amyloid-beta42 oligomers and phosphorylated tau. Presse Med 40:e219–e235PubMedCrossRef
7.
go back to reference Balduini CL, Pecci A, Savoia A (2011) Recent advances in the understanding and management of MYH9-related inherited thrombocytopenias. Br J Haematol 154:161–174PubMedCrossRef Balduini CL, Pecci A, Savoia A (2011) Recent advances in the understanding and management of MYH9-related inherited thrombocytopenias. Br J Haematol 154:161–174PubMedCrossRef
8.
go back to reference Bamshad M, Jorde LB, Carey JC (1996) A revised and extended classification of the distal arthrogryposes. Am J Med Genet 65:277–281PubMedCrossRef Bamshad M, Jorde LB, Carey JC (1996) A revised and extended classification of the distal arthrogryposes. Am J Med Genet 65:277–281PubMedCrossRef
9.
10.
go back to reference Bohlega S, Abu-Amero SN, Wakil SM, Carroll P, Al-Amr R, Lach B, Al-Sayed Y, Cupler EJ, Meyer BF (2004) Mutation of the slow myosin heavy chain rod domain underlies hyaline body myopathy. Neurology 62:1518–1521PubMedCrossRef Bohlega S, Abu-Amero SN, Wakil SM, Carroll P, Al-Amr R, Lach B, Al-Sayed Y, Cupler EJ, Meyer BF (2004) Mutation of the slow myosin heavy chain rod domain underlies hyaline body myopathy. Neurology 62:1518–1521PubMedCrossRef
11.
go back to reference Bohlega S, Lach B, Meyer BF, Al Said Y, Kambouris M, Al Homsi M, Cupler EJ (2003) Autosomal dominant hyaline body myopathy: clinical variability and pathologic findings. Neurology 61:1519–1523PubMedCrossRef Bohlega S, Lach B, Meyer BF, Al Said Y, Kambouris M, Al Homsi M, Cupler EJ (2003) Autosomal dominant hyaline body myopathy: clinical variability and pathologic findings. Neurology 61:1519–1523PubMedCrossRef
12.
go back to reference Buvoli M, Buvoli A, Leinwand LA (2012) Effects of pathogenic proline mutations on Myosin assembly. J Mol Biol 415:807–818PubMedCrossRef Buvoli M, Buvoli A, Leinwand LA (2012) Effects of pathogenic proline mutations on Myosin assembly. J Mol Biol 415:807–818PubMedCrossRef
13.
go back to reference Cancilla PA, Kalayanaraman K, Verity MA, Munsat T, Pearson CM (1971) Familial myopathy with probable lysis of myofibrils in type I fibers. Neurology 21:579–585PubMedCrossRef Cancilla PA, Kalayanaraman K, Verity MA, Munsat T, Pearson CM (1971) Familial myopathy with probable lysis of myofibrils in type I fibers. Neurology 21:579–585PubMedCrossRef
14.
go back to reference Carniel E, Taylor MR, Sinagra G, Di Lenarda A, Ku L, Fain PR, Boucek MM, Cavanaugh J, Miocic S, Slavov D, Graw SL, Feiger J, Zhu XZ, Dao D, Ferguson DA, Bristow MR, Mestroni L (2005) Alpha-myosin heavy chain: a sarcomeric gene associated with dilated and hypertrophic phenotypes of cardiomyopathy. Circulation 112:54–59PubMedCrossRef Carniel E, Taylor MR, Sinagra G, Di Lenarda A, Ku L, Fain PR, Boucek MM, Cavanaugh J, Miocic S, Slavov D, Graw SL, Feiger J, Zhu XZ, Dao D, Ferguson DA, Bristow MR, Mestroni L (2005) Alpha-myosin heavy chain: a sarcomeric gene associated with dilated and hypertrophic phenotypes of cardiomyopathy. Circulation 112:54–59PubMedCrossRef
15.
go back to reference Ceuterick C, Martin JJ, Martens C (1993) Hyaline bodies in skeletal muscle of a patient with a mild chronic nonprogressive congenital myopathy. Clin Neuropathol 12:79–83PubMed Ceuterick C, Martin JJ, Martens C (1993) Hyaline bodies in skeletal muscle of a patient with a mild chronic nonprogressive congenital myopathy. Clin Neuropathol 12:79–83PubMed
16.
go back to reference Ching YH, Ghosh TK, Cross SJ, Packham EA, Honeyman L, Loughna S, Robinson TE, Dearlove AM, Ribas G, Bonser AJ, Thomas NR, Scotter AJ, Caves LS, Tyrrell GP, Newbury-Ecob RA, Munnich A, Bonnet D, Brook JD (2005) Mutation in myosin heavy chain 6 causes atrial septal defect. Nat Genet 37:423–428PubMedCrossRef Ching YH, Ghosh TK, Cross SJ, Packham EA, Honeyman L, Loughna S, Robinson TE, Dearlove AM, Ribas G, Bonser AJ, Thomas NR, Scotter AJ, Caves LS, Tyrrell GP, Newbury-Ecob RA, Munnich A, Bonnet D, Brook JD (2005) Mutation in myosin heavy chain 6 causes atrial septal defect. Nat Genet 37:423–428PubMedCrossRef
17.
go back to reference Ciechanover A (2012) Intracellular protein degradation: from a vague idea thru the lysosome and the ubiquitin-proteasome system and onto human diseases and drug targeting. Biochim Biophys Acta 1824:3–13PubMedCrossRef Ciechanover A (2012) Intracellular protein degradation: from a vague idea thru the lysosome and the ubiquitin-proteasome system and onto human diseases and drug targeting. Biochim Biophys Acta 1824:3–13PubMedCrossRef
18.
go back to reference D’Agostino C, Nogalska A, Engel WK, Askanas V (2011) In sporadic inclusion body myositis muscle fibres TDP-43-positive inclusions are less frequent and robust than p62 inclusions, and are not associated with paired helical filaments. Neuropathol Appl Neurobiol 37:315–320PubMedCrossRef D’Agostino C, Nogalska A, Engel WK, Askanas V (2011) In sporadic inclusion body myositis muscle fibres TDP-43-positive inclusions are less frequent and robust than p62 inclusions, and are not associated with paired helical filaments. Neuropathol Appl Neurobiol 37:315–320PubMedCrossRef
19.
go back to reference Darin N, Kyllerman M, Wahlstrom J, Martinsson T, Oldfors A (1998) Autosomal dominant myopathy with congenital joint contractures, ophthalmoplegia, and rimmed vacuoles. Ann Neurol 44:242–248PubMedCrossRef Darin N, Kyllerman M, Wahlstrom J, Martinsson T, Oldfors A (1998) Autosomal dominant myopathy with congenital joint contractures, ophthalmoplegia, and rimmed vacuoles. Ann Neurol 44:242–248PubMedCrossRef
20.
go back to reference Darin N, Tajsharghi H, Ostman-Smith I, Gilljam T, Oldfors A (2007) New skeletal myopathy and cardiomyopathy associated with a missense mutation in MYH7. Neurology 68:2041–2042PubMedCrossRef Darin N, Tajsharghi H, Ostman-Smith I, Gilljam T, Oldfors A (2007) New skeletal myopathy and cardiomyopathy associated with a missense mutation in MYH7. Neurology 68:2041–2042PubMedCrossRef
21.
go back to reference Dubourg O, Maisonobe T, Behin A, Suominen T, Raheem O, Penttila S, Parton M, Eymard B, Dahl A, Udd B (2011) A novel MYH7 mutation occurring independently in French and Norwegian Laing distal myopathy families and de novo in one Finnish patient. J Neurol 258:1157–1163PubMedCrossRef Dubourg O, Maisonobe T, Behin A, Suominen T, Raheem O, Penttila S, Parton M, Eymard B, Dahl A, Udd B (2011) A novel MYH7 mutation occurring independently in French and Norwegian Laing distal myopathy families and de novo in one Finnish patient. J Neurol 258:1157–1163PubMedCrossRef
22.
go back to reference Dye DE, Azzarelli B, Goebel HH, Laing NG (2006) Novel slow-skeletal myosin (MYH7) mutation in the original myosin storage myopathy kindred. Neuromuscul Disord 16:357–360PubMedCrossRef Dye DE, Azzarelli B, Goebel HH, Laing NG (2006) Novel slow-skeletal myosin (MYH7) mutation in the original myosin storage myopathy kindred. Neuromuscul Disord 16:357–360PubMedCrossRef
23.
go back to reference Fananapazir L, Dalakas MC, Cyran F, Cohn G, Epstein ND (1993) Missense mutations in the beta-myosin heavy-chain gene cause central core disease in hypertrophic cardiomyopathy. Proc Natl Acad Sci USA 90:3993–3997PubMedCrossRef Fananapazir L, Dalakas MC, Cyran F, Cohn G, Epstein ND (1993) Missense mutations in the beta-myosin heavy-chain gene cause central core disease in hypertrophic cardiomyopathy. Proc Natl Acad Sci USA 90:3993–3997PubMedCrossRef
24.
go back to reference Feghali R, Leinwand LA (1989) Molecular genetic characterization of a developmentally regulated human perinatal myosin heavy chain. J Cell Biol 108:1791–1797PubMedCrossRef Feghali R, Leinwand LA (1989) Molecular genetic characterization of a developmentally regulated human perinatal myosin heavy chain. J Cell Biol 108:1791–1797PubMedCrossRef
25.
go back to reference Geisterfer-Lowrance AA, Kass S, Tanigawa G, Vosberg HP, McKenna W, Seidman CE, Seidman JG (1990) A molecular basis for familial hypertrophic cardiomyopathy: a beta cardiac myosin heavy chain gene missense mutation. Cell 62:999–1006PubMedCrossRef Geisterfer-Lowrance AA, Kass S, Tanigawa G, Vosberg HP, McKenna W, Seidman CE, Seidman JG (1990) A molecular basis for familial hypertrophic cardiomyopathy: a beta cardiac myosin heavy chain gene missense mutation. Cell 62:999–1006PubMedCrossRef
26.
go back to reference Hall JG, Reed SD, Greene G (1982) The distal arthrogryposes: delineation of new entities—review and nosologic discussion. Am J Med Genet 11:185–239PubMedCrossRef Hall JG, Reed SD, Greene G (1982) The distal arthrogryposes: delineation of new entities—review and nosologic discussion. Am J Med Genet 11:185–239PubMedCrossRef
27.
go back to reference Han KH, Lee H, Kang HG, Moon KC, Lee JH, Park YS, Ha IS, Ahn HS, Choi Y, Cheong HI (2011) Renal manifestations of patients with MYH9-related disorders. Pediatr Nephrol 26:549–555PubMedCrossRef Han KH, Lee H, Kang HG, Moon KC, Lee JH, Park YS, Ha IS, Ahn HS, Choi Y, Cheong HI (2011) Renal manifestations of patients with MYH9-related disorders. Pediatr Nephrol 26:549–555PubMedCrossRef
28.
go back to reference Heath KE, Campos-Barros A, Toren A, Rozenfeld-Granot G, Carlsson LE, Savige J, Denison JC, Gregory MC, White JG, Barker DF, Greinacher A, Epstein CJ, Glucksman MJ, Martignetti JA (2001) Nonmuscle myosin heavy chain IIA mutations define a spectrum of autosomal dominant macrothrombocytopenias: May-Hegglin anomaly and Fechtner, Sebastian, Epstein, and Alport-like syndromes. Am J Hum Genet 69:1033–1045PubMedCrossRef Heath KE, Campos-Barros A, Toren A, Rozenfeld-Granot G, Carlsson LE, Savige J, Denison JC, Gregory MC, White JG, Barker DF, Greinacher A, Epstein CJ, Glucksman MJ, Martignetti JA (2001) Nonmuscle myosin heavy chain IIA mutations define a spectrum of autosomal dominant macrothrombocytopenias: May-Hegglin anomaly and Fechtner, Sebastian, Epstein, and Alport-like syndromes. Am J Hum Genet 69:1033–1045PubMedCrossRef
29.
go back to reference Homayoun H, Khavandgar S, Hoover JM, Mohsen AW, Vockley J, Lacomis D, Clemens PR (2011) Novel mutation in MYH7 gene associated with distal myopathy and cardiomyopathy. Neuromuscul Disord 21:219–222PubMedCrossRef Homayoun H, Khavandgar S, Hoover JM, Mohsen AW, Vockley J, Lacomis D, Clemens PR (2011) Novel mutation in MYH7 gene associated with distal myopathy and cardiomyopathy. Neuromuscul Disord 21:219–222PubMedCrossRef
30.
go back to reference Horton MJ, Brandon CA, Morris TJ, Braun TW, Yaw KM, Sciote JJ (2001) Abundant expression of myosin heavy-chain IIB RNA in a subset of human masseter muscle fibres. Arch Oral Biol 46:1039–1050PubMedCrossRef Horton MJ, Brandon CA, Morris TJ, Braun TW, Yaw KM, Sciote JJ (2001) Abundant expression of myosin heavy-chain IIB RNA in a subset of human masseter muscle fibres. Arch Oral Biol 46:1039–1050PubMedCrossRef
31.
go back to reference Karsch-Mizrachi I, Travis M, Blau H, Leinwand LA (1989) Expression and DNA sequence analysis of a human embryonic skeletal muscle myosin heavy chain gene. Nucleic Acids Res 17:6167–6179PubMedCrossRef Karsch-Mizrachi I, Travis M, Blau H, Leinwand LA (1989) Expression and DNA sequence analysis of a human embryonic skeletal muscle myosin heavy chain gene. Nucleic Acids Res 17:6167–6179PubMedCrossRef
32.
go back to reference Kiphuth IC, Neuen-Jacob E, Struffert T, Wehner M, Wallefeld W, Laing N, Schroder R (2010) Myosin storage myopathy: a rare subtype of protein aggregate myopathies. Fortschr Neurol Psychiatr 78:219–222PubMedCrossRef Kiphuth IC, Neuen-Jacob E, Struffert T, Wehner M, Wallefeld W, Laing N, Schroder R (2010) Myosin storage myopathy: a rare subtype of protein aggregate myopathies. Fortschr Neurol Psychiatr 78:219–222PubMedCrossRef
33.
go back to reference Kurapati R, McKenna C, Lindqvist J, Williams D, Simon M, LeProust E, Baker J, Cheeseman M, Carroll N, Denny P, Laval S, Lochmuller H, Ochala J, Blanco G (2012) Myofibrillar myopathy caused by a mutation in the motor domain of mouse MyHC IIb. Hum Mol Genet 21:1706–1724PubMedCrossRef Kurapati R, McKenna C, Lindqvist J, Williams D, Simon M, LeProust E, Baker J, Cheeseman M, Carroll N, Denny P, Laval S, Lochmuller H, Ochala J, Blanco G (2012) Myofibrillar myopathy caused by a mutation in the motor domain of mouse MyHC IIb. Hum Mol Genet 21:1706–1724PubMedCrossRef
34.
go back to reference Laing NG, Ceuterick-de Groote C, Dye DE, Liyanage K, Duff RM, Dubois B, Robberecht W, Sciot R, Martin JJ, Goebel HH (2005) Myosin storage myopathy: slow skeletal myosin (MYH7) mutation in two isolated cases. Neurology 64:527–529PubMedCrossRef Laing NG, Ceuterick-de Groote C, Dye DE, Liyanage K, Duff RM, Dubois B, Robberecht W, Sciot R, Martin JJ, Goebel HH (2005) Myosin storage myopathy: slow skeletal myosin (MYH7) mutation in two isolated cases. Neurology 64:527–529PubMedCrossRef
35.
go back to reference Laing NG, Laing BA, Meredith C, Wilton SD, Robbins P, Honeyman K, Dorosz S, Kozman H, Mastaglia FL, Kakulas BA (1995) Autosomal dominant distal myopathy: linkage to chromosome 14. Am J Hum Genet 56:422–427PubMed Laing NG, Laing BA, Meredith C, Wilton SD, Robbins P, Honeyman K, Dorosz S, Kozman H, Mastaglia FL, Kakulas BA (1995) Autosomal dominant distal myopathy: linkage to chromosome 14. Am J Hum Genet 56:422–427PubMed
36.
go back to reference Lamont PJ, Udd B, Mastaglia FL, de Visser M, Hedera P, Voit T, Bridges LR, Fabian V, Rozemuller A, Laing NG (2006) Laing early onset distal myopathy: slow myosin defect with variable abnormalities on muscle biopsy. J Neurol Neurosurg Psychiatry 77:208–215PubMedCrossRef Lamont PJ, Udd B, Mastaglia FL, de Visser M, Hedera P, Voit T, Bridges LR, Fabian V, Rozemuller A, Laing NG (2006) Laing early onset distal myopathy: slow myosin defect with variable abnormalities on muscle biopsy. J Neurol Neurosurg Psychiatry 77:208–215PubMedCrossRef
37.
go back to reference Larsson L (2008) Acute quadriplegic myopathy: an acquired “myosinopathy”. Adv Exp Med Biol 642:92–98PubMedCrossRef Larsson L (2008) Acute quadriplegic myopathy: an acquired “myosinopathy”. Adv Exp Med Biol 642:92–98PubMedCrossRef
38.
go back to reference Li M, Lionikas A, Yu F, Tajsharghi H, Oldfors A, Larsson L (2006) Muscle cell and motor protein function in patients with a IIa myosin missense mutation (Glu-706 to Lys). Neuromuscul Disord 16:782–791PubMedCrossRef Li M, Lionikas A, Yu F, Tajsharghi H, Oldfors A, Larsson L (2006) Muscle cell and motor protein function in patients with a IIa myosin missense mutation (Glu-706 to Lys). Neuromuscul Disord 16:782–791PubMedCrossRef
39.
go back to reference Martinsson T, Darin N, Kyllerman M, Oldfors A, Hallberg B, Wahlstrom J (1999) Dominant hereditary inclusion-body myopathy gene (IBM3) maps to chromosome region 17p13.1. Am J Hum Genet 64:1420–1426PubMedCrossRef Martinsson T, Darin N, Kyllerman M, Oldfors A, Hallberg B, Wahlstrom J (1999) Dominant hereditary inclusion-body myopathy gene (IBM3) maps to chromosome region 17p13.1. Am J Hum Genet 64:1420–1426PubMedCrossRef
40.
go back to reference Martinsson T, Oldfors A, Darin N, Berg K, Tajsharghi H, Kyllerman M, Wahlström J (2000) Autosomal dominant myopathy: missense mutation (Glu-706 to Lys) in the myosin heavy chain IIa gene. Proc Natl Acad Sci USA 97:14614–14619PubMedCrossRef Martinsson T, Oldfors A, Darin N, Berg K, Tajsharghi H, Kyllerman M, Wahlström J (2000) Autosomal dominant myopathy: missense mutation (Glu-706 to Lys) in the myosin heavy chain IIa gene. Proc Natl Acad Sci USA 97:14614–14619PubMedCrossRef
41.
go back to reference Mastaglia FL, Phillips BA, Cala LA, Meredith C, Egli S, Akkari PA, Laing NG (2002) Early onset chromosome 14-linked distal myopathy (Laing). Neuromuscul Disord 12:350–357PubMedCrossRef Mastaglia FL, Phillips BA, Cala LA, Meredith C, Egli S, Akkari PA, Laing NG (2002) Early onset chromosome 14-linked distal myopathy (Laing). Neuromuscul Disord 12:350–357PubMedCrossRef
42.
go back to reference Masuzugawa S, Kuzuhara S, Narita Y, Naito Y, Taniguchi A, Ibi T (1997) Autosomal dominant hyaline body myopathy presenting as scapuloperoneal syndrome: clinical features and muscle pathology. Neurology 48:253–257PubMedCrossRef Masuzugawa S, Kuzuhara S, Narita Y, Naito Y, Taniguchi A, Ibi T (1997) Autosomal dominant hyaline body myopathy presenting as scapuloperoneal syndrome: clinical features and muscle pathology. Neurology 48:253–257PubMedCrossRef
43.
go back to reference Meredith C, Herrmann R, Parry C, Liyanage K, Dye DE, Durling HJ, Duff RM, Beckman K, De Visser M, Van Der Graaff MM, Hedera P, Fink JK, Petty EM, Lamont P, Fabian V, Bridges L, Voit T, Mastaglia FL, Laing NG (2004) Mutations in the slow skeletal muscle fiber myosin myosin chain gene (MYH7) cause Laing early-onset distal myopathy (MPD1). Am J Hum Genet 75:703–708PubMedCrossRef Meredith C, Herrmann R, Parry C, Liyanage K, Dye DE, Durling HJ, Duff RM, Beckman K, De Visser M, Van Der Graaff MM, Hedera P, Fink JK, Petty EM, Lamont P, Fabian V, Bridges L, Voit T, Mastaglia FL, Laing NG (2004) Mutations in the slow skeletal muscle fiber myosin myosin chain gene (MYH7) cause Laing early-onset distal myopathy (MPD1). Am J Hum Genet 75:703–708PubMedCrossRef
44.
go back to reference Muelas N, Hackman P, Luque H, Garces-Sanchez M, Azorin I, Suominen T, Sevilla T, Mayordomo F, Gomez L, Marti P, Maria Millan J, Udd B, Vilchez JJ (2010) MYH7 gene tail mutation causing myopathic profiles beyond Laing distal myopathy. Neurology 75:732–741PubMedCrossRef Muelas N, Hackman P, Luque H, Garces-Sanchez M, Azorin I, Suominen T, Sevilla T, Mayordomo F, Gomez L, Marti P, Maria Millan J, Udd B, Vilchez JJ (2010) MYH7 gene tail mutation causing myopathic profiles beyond Laing distal myopathy. Neurology 75:732–741PubMedCrossRef
45.
go back to reference Muelas N, Hackman P, Luque H, Suominen T, Espinos C, Garces-Sanchez M, Sevilla T, Azorin I, Millan J, Udd B, Vilchez J (2012) Spanish MYH7 founder mutation of Italian ancestry causing a large cluster of Laing myopathy patients. Clin Genet 81:491–494PubMedCrossRef Muelas N, Hackman P, Luque H, Suominen T, Espinos C, Garces-Sanchez M, Sevilla T, Azorin I, Millan J, Udd B, Vilchez J (2012) Spanish MYH7 founder mutation of Italian ancestry causing a large cluster of Laing myopathy patients. Clin Genet 81:491–494PubMedCrossRef
46.
go back to reference Needham M, Mastaglia FL (2007) Inclusion body myositis: current pathogenetic concepts and diagnostic and therapeutic approaches. Lancet Neurol 6:620–631PubMedCrossRef Needham M, Mastaglia FL (2007) Inclusion body myositis: current pathogenetic concepts and diagnostic and therapeutic approaches. Lancet Neurol 6:620–631PubMedCrossRef
47.
go back to reference Nogalska A, Terracciano C, D’Agostino C, King Engel W, Askanas V (2009) p62/SQSTM1 is overexpressed and prominently accumulated in inclusions of sporadic inclusion-body myositis muscle fibers, and can help differentiating it from polymyositis and dermatomyositis. Acta Neuropathol 118:407–413PubMedCrossRef Nogalska A, Terracciano C, D’Agostino C, King Engel W, Askanas V (2009) p62/SQSTM1 is overexpressed and prominently accumulated in inclusions of sporadic inclusion-body myositis muscle fibers, and can help differentiating it from polymyositis and dermatomyositis. Acta Neuropathol 118:407–413PubMedCrossRef
48.
go back to reference Ohlsson M, Hedberg C, Bradvik B, Lindberg C, Tajsharghi H, Danielsson O, Melberg A, Udd B, Martinsson T, Oldfors A (2012) Hereditary myopathy with early respiratory failure associated with a mutation in A-band titin. Brain 135(Pt 6):1682–1694PubMedCrossRef Ohlsson M, Hedberg C, Bradvik B, Lindberg C, Tajsharghi H, Danielsson O, Melberg A, Udd B, Martinsson T, Oldfors A (2012) Hereditary myopathy with early respiratory failure associated with a mutation in A-band titin. Brain 135(Pt 6):1682–1694PubMedCrossRef
51.
go back to reference Ortolano S, Tarrio R, Blanco-Arias P, Teijeira S, Rodriguez-Trelles F, Garcia-Murias M, Delague V, Levy N, Fernandez JM, Quintans B, Millan BS, Carracedo A, Navarro C, Sobrido MJ (2011) A novel MYH7 mutation links congenital fiber type disproportion and myosin storage myopathy. Neuromuscul Disord 21:254–262PubMedCrossRef Ortolano S, Tarrio R, Blanco-Arias P, Teijeira S, Rodriguez-Trelles F, Garcia-Murias M, Delague V, Levy N, Fernandez JM, Quintans B, Millan BS, Carracedo A, Navarro C, Sobrido MJ (2011) A novel MYH7 mutation links congenital fiber type disproportion and myosin storage myopathy. Neuromuscul Disord 21:254–262PubMedCrossRef
52.
go back to reference Osterlund C, Thornell LE, Eriksson PO (2011) Differences in fibre type composition between human masseter and biceps muscles in young and adults reveal unique masseter fibre type growth pattern. Anat Rec (Hoboken) 294:1158–1169CrossRef Osterlund C, Thornell LE, Eriksson PO (2011) Differences in fibre type composition between human masseter and biceps muscles in young and adults reveal unique masseter fibre type growth pattern. Anat Rec (Hoboken) 294:1158–1169CrossRef
53.
go back to reference Overeem S, Schelhaas HJ, Blijham PJ, Grootscholten MI, Ter Laak HJ, Timmermans J, van den Wijngaard A, Zwarts MJ (2007) Symptomatic distal myopathy with cardiomyopathy due to a MYH7 mutation. Neuromuscul Disord 17:490–493PubMedCrossRef Overeem S, Schelhaas HJ, Blijham PJ, Grootscholten MI, Ter Laak HJ, Timmermans J, van den Wijngaard A, Zwarts MJ (2007) Symptomatic distal myopathy with cardiomyopathy due to a MYH7 mutation. Neuromuscul Disord 17:490–493PubMedCrossRef
54.
go back to reference Pedrosa-Domellöf F, Holmgren Y, Lucas CA, Hoh JF, Thornell LE (2000) Human extraocular muscles: unique pattern of myosin heavy chain expression during myotube formation. Invest Ophthalmol Vis Sci 41:1608–1616PubMed Pedrosa-Domellöf F, Holmgren Y, Lucas CA, Hoh JF, Thornell LE (2000) Human extraocular muscles: unique pattern of myosin heavy chain expression during myotube formation. Invest Ophthalmol Vis Sci 41:1608–1616PubMed
55.
go back to reference Pegoraro E, Gavassini BF, Borsato C, Melacini P, Vianello A, Stramare R, Cenacchi G, Angelini C (2007) MYH7 gene mutation in myosin storage myopathy and scapulo-peroneal myopathy. Neuromuscul Disord 17:321–329PubMedCrossRef Pegoraro E, Gavassini BF, Borsato C, Melacini P, Vianello A, Stramare R, Cenacchi G, Angelini C (2007) MYH7 gene mutation in myosin storage myopathy and scapulo-peroneal myopathy. Neuromuscul Disord 17:321–329PubMedCrossRef
56.
go back to reference Rayment I, Holden HM, Whittaker M, Yohn CB, Lorenz M, Holmes KC, Milligan RA (1993) Structure of the actin–myosin complex and its implications for muscle contraction. Science 261:58–65PubMedCrossRef Rayment I, Holden HM, Whittaker M, Yohn CB, Lorenz M, Holmes KC, Milligan RA (1993) Structure of the actin–myosin complex and its implications for muscle contraction. Science 261:58–65PubMedCrossRef
57.
go back to reference Ruppel KM, Spudich JA (1996) Structure–function analysis of the motor domain of myosin. Annu Rev Cell Dev Biol 12:543–573PubMedCrossRef Ruppel KM, Spudich JA (1996) Structure–function analysis of the motor domain of myosin. Annu Rev Cell Dev Biol 12:543–573PubMedCrossRef
58.
go back to reference Ruppel KM, Spudich JA (1996) Structure-function studies of the myosin motor domain: importance of the 50-kDa cleft. Mol Biol Cell 7:1123–1136PubMed Ruppel KM, Spudich JA (1996) Structure-function studies of the myosin motor domain: importance of the 50-kDa cleft. Mol Biol Cell 7:1123–1136PubMed
59.
go back to reference Sahgal V, Sahgal S (1977) A new congenital myopathy: a morphological, cytochemical and histochemical study. Acta Neuropathol (Berl) 37:225–230CrossRef Sahgal V, Sahgal S (1977) A new congenital myopathy: a morphological, cytochemical and histochemical study. Acta Neuropathol (Berl) 37:225–230CrossRef
60.
go back to reference Sartorius CA, Lu BD, Acakpo-Satchivi L, Jacobsen RP, Byrnes WC, Leinwand LA (1998) Myosin heavy chains IIa and IId are functionally distinct in the mouse. J Cell Biol 141:943–953PubMedCrossRef Sartorius CA, Lu BD, Acakpo-Satchivi L, Jacobsen RP, Byrnes WC, Leinwand LA (1998) Myosin heavy chains IIa and IId are functionally distinct in the mouse. J Cell Biol 141:943–953PubMedCrossRef
61.
go back to reference Schiaffino S (2010) Fibre types in skeletal muscle: a personal account. Acta Physiol (Oxf) 199:451–463CrossRef Schiaffino S (2010) Fibre types in skeletal muscle: a personal account. Acta Physiol (Oxf) 199:451–463CrossRef
62.
go back to reference Schiaffino S, Reggiani C (1994) Myosin isoforms in mammalian skeletal muscle. J Appl Physiol 77:493–501PubMed Schiaffino S, Reggiani C (1994) Myosin isoforms in mammalian skeletal muscle. J Appl Physiol 77:493–501PubMed
63.
go back to reference Schiaffino S, Reggiani C (1996) Molecular diversity of myofibrillar proteins: gene regulation and functional significance. Physiol Rev 76:371–423PubMed Schiaffino S, Reggiani C (1996) Molecular diversity of myofibrillar proteins: gene regulation and functional significance. Physiol Rev 76:371–423PubMed
65.
go back to reference Shingde MV, Spring PJ, Maxwell A, Wills EJ, Harper CG, Dye DE, Laing NG, North KN (2006) Myosin storage (hyaline body) myopathy: a case report. Neuromuscul Disord 16:882–886PubMedCrossRef Shingde MV, Spring PJ, Maxwell A, Wills EJ, Harper CG, Dye DE, Laing NG, North KN (2006) Myosin storage (hyaline body) myopathy: a case report. Neuromuscul Disord 16:882–886PubMedCrossRef
66.
go back to reference Smerdu V, Karsch-Mizrachi I, Campione M, Leinwand L, Schiaffino S (1994) Type IIx myosin heavy chain transcripts are expressed in type IIb fibers of human skeletal muscle. Am J Physiol 267:C1723–C1728PubMed Smerdu V, Karsch-Mizrachi I, Campione M, Leinwand L, Schiaffino S (1994) Type IIx myosin heavy chain transcripts are expressed in type IIb fibers of human skeletal muscle. Am J Physiol 267:C1723–C1728PubMed
67.
go back to reference Sohn RL, Vikstrom KL, Strauss M, Cohen C, Szent-Gyorgyi AG, Leinwand LA (1997) A 29 residue region of the sarcomeric myosin rod is necessary for filament formation. J Mol Biol 266:317–330PubMedCrossRef Sohn RL, Vikstrom KL, Strauss M, Cohen C, Szent-Gyorgyi AG, Leinwand LA (1997) A 29 residue region of the sarcomeric myosin rod is necessary for filament formation. J Mol Biol 266:317–330PubMedCrossRef
68.
go back to reference Stalpers X, Verrips A, Braakhekke J, Lammens M, van den Wijngaard A, Mostert A (2011) Scoliosis surgery in a patient with “de novo” myosin storage myopathy. Neuromuscul Disord 21:812–815PubMedCrossRef Stalpers X, Verrips A, Braakhekke J, Lammens M, van den Wijngaard A, Mostert A (2011) Scoliosis surgery in a patient with “de novo” myosin storage myopathy. Neuromuscul Disord 21:812–815PubMedCrossRef
69.
go back to reference Sunnerhagen KS, Darin N, Tasjharghi H, Oldfors A (2004) The effects of endurance training in persons with a hereditary myosin myopathy. Acta Neurol Scand 110:80–86PubMedCrossRef Sunnerhagen KS, Darin N, Tasjharghi H, Oldfors A (2004) The effects of endurance training in persons with a hereditary myosin myopathy. Acta Neurol Scand 110:80–86PubMedCrossRef
70.
go back to reference Tajsharghi H, Hilton-Jones D, Raheem O, Saukkonen AM, Oldfors A, Udd B (2010) Human disease caused by loss of fast IIa myosin heavy chain due to recessive MYH2 mutations. Brain 133:1451–1459PubMedCrossRef Tajsharghi H, Hilton-Jones D, Raheem O, Saukkonen AM, Oldfors A, Udd B (2010) Human disease caused by loss of fast IIa myosin heavy chain due to recessive MYH2 mutations. Brain 133:1451–1459PubMedCrossRef
71.
go back to reference Tajsharghi H, Kimber E, Kroksmark AK, Jerre R, Tulinius M, Oldfors A (2008) Embryonic myosin heavy-chain mutations cause distal arthrogryposis and developmental myosin myopathy that persists postnatally. Arch Neurol 65:1083–1090PubMedCrossRef Tajsharghi H, Kimber E, Kroksmark AK, Jerre R, Tulinius M, Oldfors A (2008) Embryonic myosin heavy-chain mutations cause distal arthrogryposis and developmental myosin myopathy that persists postnatally. Arch Neurol 65:1083–1090PubMedCrossRef
72.
go back to reference Tajsharghi H, Oldfors A, Macleod DP, Swash M (2007) Homozygous mutation in MYH7 in myosin storage myopathy and cardiomyopathy. Neurology 68:962PubMedCrossRef Tajsharghi H, Oldfors A, Macleod DP, Swash M (2007) Homozygous mutation in MYH7 in myosin storage myopathy and cardiomyopathy. Neurology 68:962PubMedCrossRef
73.
go back to reference Tajsharghi H, Pilon M, Oldfors A (2005) A Caenorhabditis elegans model of the myosin heavy chain IIa E706K mutation. Ann Neurol 58:442–448PubMedCrossRef Tajsharghi H, Pilon M, Oldfors A (2005) A Caenorhabditis elegans model of the myosin heavy chain IIa E706K mutation. Ann Neurol 58:442–448PubMedCrossRef
74.
go back to reference Tajsharghi H, Stibrant Sunnerhagen K, Darin N, Kyllerman M, Oldfors A (2004) Induced shift in myosin heavy chain expression in myosin myopathy by endurance training. J Neurol 251:179–183PubMedCrossRef Tajsharghi H, Stibrant Sunnerhagen K, Darin N, Kyllerman M, Oldfors A (2004) Induced shift in myosin heavy chain expression in myosin myopathy by endurance training. J Neurol 251:179–183PubMedCrossRef
75.
go back to reference Tajsharghi H, Thornell LE, Darin N, Martinsson T, Kyllerman M, Wahlstrom J, Oldfors A (2002) Myosin heavy chain IIa gene mutation E706 K is pathogenic and its expression increases with age. Neurology 58:780–786PubMedCrossRef Tajsharghi H, Thornell LE, Darin N, Martinsson T, Kyllerman M, Wahlstrom J, Oldfors A (2002) Myosin heavy chain IIa gene mutation E706 K is pathogenic and its expression increases with age. Neurology 58:780–786PubMedCrossRef
76.
go back to reference Tajsharghi H, Thornell LE, Lindberg C, Lindvall B, Henriksson KG, Oldfors A (2003) Myosin storage myopathy associated with a heterozygous missense mutation in MYH7. Ann Neurol 54:494–500PubMedCrossRef Tajsharghi H, Thornell LE, Lindberg C, Lindvall B, Henriksson KG, Oldfors A (2003) Myosin storage myopathy associated with a heterozygous missense mutation in MYH7. Ann Neurol 54:494–500PubMedCrossRef
77.
go back to reference Tasca G, Ricci E, Penttila S, Monforte M, Giglio V, Ottaviani P, Camastra G, Silvestri G, Udd B (2012) New phenotype and pathology features in MYH7-related distal myopathy. Neuromuscul Disord 22:640–647PubMedCrossRef Tasca G, Ricci E, Penttila S, Monforte M, Giglio V, Ottaviani P, Camastra G, Silvestri G, Udd B (2012) New phenotype and pathology features in MYH7-related distal myopathy. Neuromuscul Disord 22:640–647PubMedCrossRef
78.
go back to reference Toydemir RM, Chen H, Proud VK, Martin R, van Bokhoven H, Hamel BC, Tuerlings JH, Stratakis CA, Jorde LB, Bamshad MJ (2006) Trismus-pseudocamptodactyly syndrome is caused by recurrent mutation of MYH8. Am J Med Genet A 140:2387–2393PubMed Toydemir RM, Chen H, Proud VK, Martin R, van Bokhoven H, Hamel BC, Tuerlings JH, Stratakis CA, Jorde LB, Bamshad MJ (2006) Trismus-pseudocamptodactyly syndrome is caused by recurrent mutation of MYH8. Am J Med Genet A 140:2387–2393PubMed
79.
go back to reference Toydemir RM, Rutherford A, Whitby FG, Jorde LB, Carey JC, Bamshad MJ (2006) Mutations in embryonic myosin heavy chain (MYH3) cause Freeman–Sheldon syndrome and Sheldon–Hall syndrome. Nat Genet 38:561–565PubMedCrossRef Toydemir RM, Rutherford A, Whitby FG, Jorde LB, Carey JC, Bamshad MJ (2006) Mutations in embryonic myosin heavy chain (MYH3) cause Freeman–Sheldon syndrome and Sheldon–Hall syndrome. Nat Genet 38:561–565PubMedCrossRef
80.
go back to reference Udd B (2009) 165th ENMC International Workshop: distal myopathies 6–8th February 2009 Naarden, The Netherlands. Neuromuscul Disord 19:429–438PubMedCrossRef Udd B (2009) 165th ENMC International Workshop: distal myopathies 6–8th February 2009 Naarden, The Netherlands. Neuromuscul Disord 19:429–438PubMedCrossRef
81.
go back to reference Uro-Coste E, Arne-Bes MC, Pellissier JF, Richard P, Levade T, Heitz F, Figarella-Branger D, Delisle MB (2009) Striking phenotypic variability in two familial cases of myosin storage myopathy with a MYH7 Leu1793pro mutation. Neuromuscul Disord 19:163–166PubMedCrossRef Uro-Coste E, Arne-Bes MC, Pellissier JF, Richard P, Levade T, Heitz F, Figarella-Branger D, Delisle MB (2009) Striking phenotypic variability in two familial cases of myosin storage myopathy with a MYH7 Leu1793pro mutation. Neuromuscul Disord 19:163–166PubMedCrossRef
82.
go back to reference Veugelers M, Bressan M, McDermott DA, Weremowicz S, Morton CC, Mabry CC, Lefaivre JF, Zunamon A, Destree A, Chaudron JM, Basson CT (2004) Mutation of perinatal myosin heavy chain associated with a Carney complex variant. N Engl J Med 351:460–469PubMedCrossRef Veugelers M, Bressan M, McDermott DA, Weremowicz S, Morton CC, Mabry CC, Lefaivre JF, Zunamon A, Destree A, Chaudron JM, Basson CT (2004) Mutation of perinatal myosin heavy chain associated with a Carney complex variant. N Engl J Med 351:460–469PubMedCrossRef
83.
go back to reference Voit T, Kutz P, Leube B, Neuen-Jacob E, Schroder JM, Cavallotti D, Vaccario ML, Schaper J, Broich P, Cohn R, Baethmann M, Gohlich-Ratmann G, Scoppetta C, Herrmann R (2001) Autosomal dominant distal myopathy: further evidence of a chromosome 14 locus. Neuromuscul Disord 11:11–19PubMedCrossRef Voit T, Kutz P, Leube B, Neuen-Jacob E, Schroder JM, Cavallotti D, Vaccario ML, Schaper J, Broich P, Cohn R, Baethmann M, Gohlich-Ratmann G, Scoppetta C, Herrmann R (2001) Autosomal dominant distal myopathy: further evidence of a chromosome 14 locus. Neuromuscul Disord 11:11–19PubMedCrossRef
84.
go back to reference Weiss A, Leinwand LA (1996) The mammalian myosin heavy chain gene family. Annu Rev Cell Dev Biol 12:417–439PubMedCrossRef Weiss A, Leinwand LA (1996) The mammalian myosin heavy chain gene family. Annu Rev Cell Dev Biol 12:417–439PubMedCrossRef
85.
go back to reference Weiss A, McDonough D, Wertman B, Acakpo-Satchivi L, Montgomery K, Kucherlapati R, Leinwand L, Krauter K (1999) Organization of human and mouse skeletal myosin heavy chain gene clusters is highly conserved. Proc Natl Acad Sci USA 96:2958–2963PubMedCrossRef Weiss A, McDonough D, Wertman B, Acakpo-Satchivi L, Montgomery K, Kucherlapati R, Leinwand L, Krauter K (1999) Organization of human and mouse skeletal myosin heavy chain gene clusters is highly conserved. Proc Natl Acad Sci USA 96:2958–2963PubMedCrossRef
86.
go back to reference Zatloukal K, Stumptner C, Fuchsbichler A, Heid H, Schnoelzer M, Kenner L, Kleinert R, Prinz M, Aguzzi A, Denk H (2002) p62 Is a common component of cytoplasmic inclusions in protein aggregation diseases. Am J Pathol 160:255–263PubMedCrossRef Zatloukal K, Stumptner C, Fuchsbichler A, Heid H, Schnoelzer M, Kenner L, Kleinert R, Prinz M, Aguzzi A, Denk H (2002) p62 Is a common component of cytoplasmic inclusions in protein aggregation diseases. Am J Pathol 160:255–263PubMedCrossRef
87.
go back to reference Zeng W, Conibear PB, Dickens JL, Cowie RA, Wakelin S, Malnasi-Csizmadia A, Bagshaw CR (2004) Dynamics of actomyosin interactions in relation to the cross-bridge cycle. Phil Trans R Soc B 359:1843–1855PubMedCrossRef Zeng W, Conibear PB, Dickens JL, Cowie RA, Wakelin S, Malnasi-Csizmadia A, Bagshaw CR (2004) Dynamics of actomyosin interactions in relation to the cross-bridge cycle. Phil Trans R Soc B 359:1843–1855PubMedCrossRef
Metadata
Title
Myosinopathies: pathology and mechanisms
Authors
Homa Tajsharghi
Anders Oldfors
Publication date
01-01-2013
Publisher
Springer-Verlag
Published in
Acta Neuropathologica / Issue 1/2013
Print ISSN: 0001-6322
Electronic ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-012-1024-2

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