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Published in: Acta Neuropathologica Communications 1/2014

Open Access 01-12-2014 | Research

Altered lipid levels provide evidence for myelin dysfunction in multiple system atrophy

Authors: Anthony S Don, Jen-Hsiang T Hsiao, Jonathan M Bleasel, Timothy A Couttas, Glenda M Halliday, Woojin Scott Kim

Published in: Acta Neuropathologica Communications | Issue 1/2014

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Abstract

Multiple system atrophy (MSA) is a rapidly-progressive neurodegenerative disease characterized by parkinsonism, cerebellar ataxia and autonomic failure. A pathological hallmark of MSA is the presence of α-synuclein deposits in oligodendrocytes, the myelin-producing support cells of the brain. Brain pathology and in vitro studies indicate that myelin instability may be an early event in the pathogenesis of MSA. Lipid is a major constituent (78% w/w) of myelin and has been implicated in myelin dysfunction in MSA. However, changes, if any, in lipid level/distribution in MSA brain are unknown. Here, we undertook a comprehensive analysis of MSA myelin. We quantitatively measured three groups of lipids, sphingomyelin, sulfatide and galactosylceramide, which are all important in myelin integrity and function, in affected (under the motor cortex) and unaffected (under the visual cortex) white matter regions. For all three groups of lipids, most of the species were severely decreased (40–69%) in affected but not unaffected MSA white matter. An analysis of the distribution of lipid species showed no significant shift in fatty acid chain length/content with MSA. The decrease in lipid levels was concomitant with increased α-synuclein expression. These data indicate that the absolute levels, and not distribution, of myelin lipids are altered in MSA, and provide evidence for myelin lipid dysfunction in MSA pathology. We propose that dysregulation of myelin lipids in the course of MSA pathogenesis may trigger myelin instability.
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Literature
1.
go back to reference Bower JH, Maraganore DM, McDonnell SK, Rocca WA: Incidence of progressive supranuclear palsy and multiple system atrophy in Olmsted County, Minnesota, 1976 to 1990. Neurology 1997, 49: 1284–1288. 10.1212/WNL.49.5.1284CrossRefPubMed Bower JH, Maraganore DM, McDonnell SK, Rocca WA: Incidence of progressive supranuclear palsy and multiple system atrophy in Olmsted County, Minnesota, 1976 to 1990. Neurology 1997, 49: 1284–1288. 10.1212/WNL.49.5.1284CrossRefPubMed
2.
go back to reference Schrag A, Ben-Shlomo Y, Quinn N: Prevalence of progressive supranuclear palsy and multiple system atrophy: a cross-sectional study. Lancet 1999, 354: 1771–1775. 10.1016/S0140-6736(99)04137-9CrossRefPubMed Schrag A, Ben-Shlomo Y, Quinn N: Prevalence of progressive supranuclear palsy and multiple system atrophy: a cross-sectional study. Lancet 1999, 354: 1771–1775. 10.1016/S0140-6736(99)04137-9CrossRefPubMed
3.
go back to reference Schrag A, Wenning GK, Quinn N, Ben-Shlomo Y: Survival in multiple system atrophy. Mov Disord 2008, 23: 294–296. 10.1002/mds.21839CrossRefPubMed Schrag A, Wenning GK, Quinn N, Ben-Shlomo Y: Survival in multiple system atrophy. Mov Disord 2008, 23: 294–296. 10.1002/mds.21839CrossRefPubMed
4.
go back to reference Papapetropoulos S, Tuchman A, Laufer D, Papatsoris AG, Papapetropoulos N, Mash DC: Causes of death in multiple system atrophy. J Neurol Neurosurg Psychiatry 2007, 78: 327–329. 10.1136/jnnp.2006.103929CrossRefPubMedPubMedCentral Papapetropoulos S, Tuchman A, Laufer D, Papatsoris AG, Papapetropoulos N, Mash DC: Causes of death in multiple system atrophy. J Neurol Neurosurg Psychiatry 2007, 78: 327–329. 10.1136/jnnp.2006.103929CrossRefPubMedPubMedCentral
5.
go back to reference Papp MI, Kahn JE, Lantos PL: Glial cytoplasmic inclusions in the CNS of patients with multiple system atrophy (striatonigral degeneration, olivopontocerebellar atrophy and Shy-Drager syndrome). J Neurol Sci 1989, 94: 79–100. 10.1016/0022-510X(89)90219-0CrossRefPubMed Papp MI, Kahn JE, Lantos PL: Glial cytoplasmic inclusions in the CNS of patients with multiple system atrophy (striatonigral degeneration, olivopontocerebellar atrophy and Shy-Drager syndrome). J Neurol Sci 1989, 94: 79–100. 10.1016/0022-510X(89)90219-0CrossRefPubMed
6.
go back to reference Wenning G, Tison F, Ben Shlomo Y, Daniel S, Quinn N: Multiple system atrophy: a review of 203 pathologically proven cases. Mov Disord 1997, 12: 133–147. 10.1002/mds.870120203CrossRefPubMed Wenning G, Tison F, Ben Shlomo Y, Daniel S, Quinn N: Multiple system atrophy: a review of 203 pathologically proven cases. Mov Disord 1997, 12: 133–147. 10.1002/mds.870120203CrossRefPubMed
7.
go back to reference Ozawa T: Morphological substrate of autonomic failure and neurohormonal dysfunction in multiple system atrophy: impact on determining phenotype spectrum. Acta Neuropathol 2007, 114: 201–211. 10.1007/s00401-007-0254-1CrossRefPubMed Ozawa T: Morphological substrate of autonomic failure and neurohormonal dysfunction in multiple system atrophy: impact on determining phenotype spectrum. Acta Neuropathol 2007, 114: 201–211. 10.1007/s00401-007-0254-1CrossRefPubMed
8.
go back to reference Ferguson B, Matyszak MK, Esiri MM, Perry VH: Axonal damage in acute multiple sclerosis lesions. Brain 1997, 120: 393–399. 10.1093/brain/120.3.393CrossRefPubMed Ferguson B, Matyszak MK, Esiri MM, Perry VH: Axonal damage in acute multiple sclerosis lesions. Brain 1997, 120: 393–399. 10.1093/brain/120.3.393CrossRefPubMed
9.
go back to reference Trapp BD, Nave K-A: Multiple sclerosis: an immune or neurodegenerative disorder? Annu Rev Neurosci 2008, 31: 247–269. 10.1146/annurev.neuro.30.051606.094313CrossRefPubMed Trapp BD, Nave K-A: Multiple sclerosis: an immune or neurodegenerative disorder? Annu Rev Neurosci 2008, 31: 247–269. 10.1146/annurev.neuro.30.051606.094313CrossRefPubMed
10.
go back to reference Wilkins A, Majed H, Layfield R, Compston A, Chandran S: Oligodendrocytes promote neuronal survival and axonal length by distinct intracellular mechanisms: a novel role for oligodendrocyte-derived glial cell line-derived neurotrophic factor. J Neurosci 2003, 23: 4967–4974.PubMed Wilkins A, Majed H, Layfield R, Compston A, Chandran S: Oligodendrocytes promote neuronal survival and axonal length by distinct intracellular mechanisms: a novel role for oligodendrocyte-derived glial cell line-derived neurotrophic factor. J Neurosci 2003, 23: 4967–4974.PubMed
11.
go back to reference Sailer A: First genome-wide association study in multiple system atrophy [abstract]. Mov Disord 2012, 27: 1425. 10.1002/mds.25029CrossRef Sailer A: First genome-wide association study in multiple system atrophy [abstract]. Mov Disord 2012, 27: 1425. 10.1002/mds.25029CrossRef
12.
go back to reference Ozawa T, Takano H, Onodera O, Kobayashi H, Ikeuchi T, Koide R, Okuizumi K, Shimohata T, Wakabayashi K, Takahashi H, Tsuji S: No mutation in the entire coding region of the alpha-synuclein gene in pathologically confirmed cases of multiple system atrophy. Neurosci Lett 1999, 270: 110–112. 10.1016/S0304-3940(99)00475-9CrossRefPubMed Ozawa T, Takano H, Onodera O, Kobayashi H, Ikeuchi T, Koide R, Okuizumi K, Shimohata T, Wakabayashi K, Takahashi H, Tsuji S: No mutation in the entire coding region of the alpha-synuclein gene in pathologically confirmed cases of multiple system atrophy. Neurosci Lett 1999, 270: 110–112. 10.1016/S0304-3940(99)00475-9CrossRefPubMed
13.
go back to reference Lincoln SJ, Ross OA, Milkovic NM, Dickson DW, Rajput A, Robinson CA, Papapetropoulos S, Mash DC, Farrer MJ: Quantitative PCR-based screening of [alpha]-synuclein multiplication in multiple system atrophy. Parkinsonism Relat Disord 2007, 13: 340–342. 10.1016/j.parkreldis.2006.12.005CrossRefPubMedPubMedCentral Lincoln SJ, Ross OA, Milkovic NM, Dickson DW, Rajput A, Robinson CA, Papapetropoulos S, Mash DC, Farrer MJ: Quantitative PCR-based screening of [alpha]-synuclein multiplication in multiple system atrophy. Parkinsonism Relat Disord 2007, 13: 340–342. 10.1016/j.parkreldis.2006.12.005CrossRefPubMedPubMedCentral
14.
go back to reference Morris H, Vaughan J, Datta S, Bandopadhyay R, De Silva HAR, Schrag A, Cairns NJ, Burn D, Nath U, Lantos PL: Multiple system atrophy/progressive supranuclear palsy: α-synuclein, synphilin, tau, and APOE. Neurology 2000, 55: 1918–1920. 10.1212/WNL.55.12.1918CrossRefPubMed Morris H, Vaughan J, Datta S, Bandopadhyay R, De Silva HAR, Schrag A, Cairns NJ, Burn D, Nath U, Lantos PL: Multiple system atrophy/progressive supranuclear palsy: α-synuclein, synphilin, tau, and APOE. Neurology 2000, 55: 1918–1920. 10.1212/WNL.55.12.1918CrossRefPubMed
15.
go back to reference Song YJ, Lundvig DM, Huang Y, Gai WP, Blumbergs PC, Hojrup P, Otzen D, Halliday GM, Jensen PH: p25alpha relocalizes in oligodendroglia from myelin to cytoplasmic inclusions in multiple system atrophy. Am J Pathol 2007, 171: 1291–1303. 10.2353/ajpath.2007.070201CrossRefPubMedPubMedCentral Song YJ, Lundvig DM, Huang Y, Gai WP, Blumbergs PC, Hojrup P, Otzen D, Halliday GM, Jensen PH: p25alpha relocalizes in oligodendroglia from myelin to cytoplasmic inclusions in multiple system atrophy. Am J Pathol 2007, 171: 1291–1303. 10.2353/ajpath.2007.070201CrossRefPubMedPubMedCentral
16.
go back to reference Marcus J, Honigbaum S, Shroff S, Honke K, Rosenbluth J, Dupree JL: Sulfatide is essential for the maintenance of CNS myelin and axon structure. Glia 2006, 53: 372–381. 10.1002/glia.20292CrossRefPubMed Marcus J, Honigbaum S, Shroff S, Honke K, Rosenbluth J, Dupree JL: Sulfatide is essential for the maintenance of CNS myelin and axon structure. Glia 2006, 53: 372–381. 10.1002/glia.20292CrossRefPubMed
17.
go back to reference Bosio A, Binczek E, Haupt WF, Stoffel W: Composition and biophysical properties of myelin lipid define the neurological defects in galactocerebroside-and sulfatide-deficient mice. J Neurochem 1998, 70: 308–315. 10.1046/j.1471-4159.1998.70010308.xCrossRefPubMed Bosio A, Binczek E, Haupt WF, Stoffel W: Composition and biophysical properties of myelin lipid define the neurological defects in galactocerebroside-and sulfatide-deficient mice. J Neurochem 1998, 70: 308–315. 10.1046/j.1471-4159.1998.70010308.xCrossRefPubMed
18.
go back to reference Hanada K, Nishijima M, Akamatsu Y, Pagano RE: Both sphingolipids and cholesterol participate in the detergent insolubility of alkaline phosphatase, a glycosylphosphatidylinositol-anchored protein, in mammalian membranes. J Biol Chem 1995, 270: 6254–6260. 10.1074/jbc.270.20.11962CrossRefPubMed Hanada K, Nishijima M, Akamatsu Y, Pagano RE: Both sphingolipids and cholesterol participate in the detergent insolubility of alkaline phosphatase, a glycosylphosphatidylinositol-anchored protein, in mammalian membranes. J Biol Chem 1995, 270: 6254–6260. 10.1074/jbc.270.20.11962CrossRefPubMed
19.
go back to reference Scheiffele P, Roth MG, Simons K: Interaction of influenza virus haemagglutinin with sphingolipid-cholesterol membrane domains via its transmembrane domain. EMBO J 1997, 16: 5501–5508. 10.1093/emboj/16.18.5501CrossRefPubMedPubMedCentral Scheiffele P, Roth MG, Simons K: Interaction of influenza virus haemagglutinin with sphingolipid-cholesterol membrane domains via its transmembrane domain. EMBO J 1997, 16: 5501–5508. 10.1093/emboj/16.18.5501CrossRefPubMedPubMedCentral
20.
go back to reference Kim WS, Hsiao J-HT, Bhatia S, Glaros EN, Don AS, Tsuruoka S, Shannon Weickert C, Halliday GM: ABCA8 stimulates sphingomyelin production in oligodendrocytes. Biochem J 2013, 452: 401–410. 10.1042/BJ20121764CrossRefPubMed Kim WS, Hsiao J-HT, Bhatia S, Glaros EN, Don AS, Tsuruoka S, Shannon Weickert C, Halliday GM: ABCA8 stimulates sphingomyelin production in oligodendrocytes. Biochem J 2013, 452: 401–410. 10.1042/BJ20121764CrossRefPubMed
21.
go back to reference O’Brien JS, Sampson EL: Lipid composition of the normal human brain: gray matter, white matter, and myelin. J Lipid Res 1965, 6: 537–544.PubMed O’Brien JS, Sampson EL: Lipid composition of the normal human brain: gray matter, white matter, and myelin. J Lipid Res 1965, 6: 537–544.PubMed
22.
go back to reference Bosio A, Binczek E, Stoffel W: Functional breakdown of the lipid bilayer of the myelin membrane in central and peripheral nervous system by disrupted galactocerebroside synthesis. Proc Natl Acad Sci 1996, 93: 13280–13285. 10.1073/pnas.93.23.13280CrossRefPubMedPubMedCentral Bosio A, Binczek E, Stoffel W: Functional breakdown of the lipid bilayer of the myelin membrane in central and peripheral nervous system by disrupted galactocerebroside synthesis. Proc Natl Acad Sci 1996, 93: 13280–13285. 10.1073/pnas.93.23.13280CrossRefPubMedPubMedCentral
23.
go back to reference Coetzee T, Fujita N, Dupree J, Shi R, Blight A, Suzuki K, Suzuki K, Popko B: Myelination in the absence of galactocerebroside and sulfatide: normal structure with abnormal function and regional instability. Cell 1996, 86: 209–219. 10.1016/S0092-8674(00)80093-8CrossRefPubMed Coetzee T, Fujita N, Dupree J, Shi R, Blight A, Suzuki K, Suzuki K, Popko B: Myelination in the absence of galactocerebroside and sulfatide: normal structure with abnormal function and regional instability. Cell 1996, 86: 209–219. 10.1016/S0092-8674(00)80093-8CrossRefPubMed
24.
go back to reference Wenning GK, Tison F, Seppi K, Sampaio C, Diem A, Yekhlef F, Ghorayeb I, Ory F, Galitzky M, Scaravilli T, Bozi M, Colosimo C, Gilman S, Shults CW, Quinn NP, Rascol O, Poewe W: Development and validation of the Unified Multiple System Atrophy Rating Scale (UMSARS). Mov Disord 2004, 19: 1391–1402. 10.1002/mds.20255CrossRefPubMed Wenning GK, Tison F, Seppi K, Sampaio C, Diem A, Yekhlef F, Ghorayeb I, Ory F, Galitzky M, Scaravilli T, Bozi M, Colosimo C, Gilman S, Shults CW, Quinn NP, Rascol O, Poewe W: Development and validation of the Unified Multiple System Atrophy Rating Scale (UMSARS). Mov Disord 2004, 19: 1391–1402. 10.1002/mds.20255CrossRefPubMed
25.
go back to reference Bielawski J, Szulc ZM, Hannun YA, Bielawska A: Simultaneous quantitative analysis of bioactive sphingolipids by high-performance liquid chromatography-tandem mass spectrometry. Methods 2006, 39: 82–91. 10.1016/j.ymeth.2006.05.004CrossRefPubMed Bielawski J, Szulc ZM, Hannun YA, Bielawska A: Simultaneous quantitative analysis of bioactive sphingolipids by high-performance liquid chromatography-tandem mass spectrometry. Methods 2006, 39: 82–91. 10.1016/j.ymeth.2006.05.004CrossRefPubMed
26.
go back to reference Wong JW, Abuhusain HJ, McDonald KL, Don AS: MMSAT: automated quantification of metabolites in selected reaction monitoring experiments. Anal Chem 2012, 84: 470–474. 10.1021/ac2026578CrossRefPubMed Wong JW, Abuhusain HJ, McDonald KL, Don AS: MMSAT: automated quantification of metabolites in selected reaction monitoring experiments. Anal Chem 2012, 84: 470–474. 10.1021/ac2026578CrossRefPubMed
27.
go back to reference Hejazi L, Wong JW, Cheng D, Proschogo N, Ebrahimi D, Garner B, Don AS: Mass and relative elution time profiling: two-dimensional analysis of sphingolipids in Alzheimer’s disease brains. Biochem J 2011, 438: 165–175. 10.1042/BJ20110566CrossRefPubMed Hejazi L, Wong JW, Cheng D, Proschogo N, Ebrahimi D, Garner B, Don AS: Mass and relative elution time profiling: two-dimensional analysis of sphingolipids in Alzheimer’s disease brains. Biochem J 2011, 438: 165–175. 10.1042/BJ20110566CrossRefPubMed
28.
go back to reference Bleasel JM, Hsiao J-HT, Halliday GM, Kim WS: Increased expression of ABCA8 in multiple system atrophy brain is associated with changes in pathogenic proteins. J Parkinsons Dis 2013, 3: 331–339.PubMed Bleasel JM, Hsiao J-HT, Halliday GM, Kim WS: Increased expression of ABCA8 in multiple system atrophy brain is associated with changes in pathogenic proteins. J Parkinsons Dis 2013, 3: 331–339.PubMed
29.
go back to reference Gault CR, Obeid LM, Hannun YA: An overview of sphingolipid metabolism: from synthesis to breakdown. Adv Exp Med Biol 2010, 688: 1–23. 10.1007/978-1-4419-6741-1_1CrossRefPubMedPubMedCentral Gault CR, Obeid LM, Hannun YA: An overview of sphingolipid metabolism: from synthesis to breakdown. Adv Exp Med Biol 2010, 688: 1–23. 10.1007/978-1-4419-6741-1_1CrossRefPubMedPubMedCentral
30.
go back to reference Baumann N, Pham-Dinh D: Biology of oligodendrocyte and myelin in the mammalian central nervous system. Physiol Rev 2001, 81: 871–927.PubMed Baumann N, Pham-Dinh D: Biology of oligodendrocyte and myelin in the mammalian central nervous system. Physiol Rev 2001, 81: 871–927.PubMed
31.
go back to reference Pewzner-Jung Y, Ben-Dor S, Futerman AH: When do Lasses (longevity assurance genes) become CerS (ceramide synthases)? Insights into the regulation of ceramide synthesis. J Biol Chem 2006, 281: 25001–25005. 10.1074/jbc.R600010200CrossRefPubMed Pewzner-Jung Y, Ben-Dor S, Futerman AH: When do Lasses (longevity assurance genes) become CerS (ceramide synthases)? Insights into the regulation of ceramide synthesis. J Biol Chem 2006, 281: 25001–25005. 10.1074/jbc.R600010200CrossRefPubMed
32.
go back to reference Lahiri S, Futerman AH: LASS5 is a bona fide dihydroceramide synthase that selectively utilizes palmitoyl-CoA as acyl donor. J Biol Chem 2005, 280: 33735–33738. 10.1074/jbc.M506485200CrossRefPubMed Lahiri S, Futerman AH: LASS5 is a bona fide dihydroceramide synthase that selectively utilizes palmitoyl-CoA as acyl donor. J Biol Chem 2005, 280: 33735–33738. 10.1074/jbc.M506485200CrossRefPubMed
33.
go back to reference Guillas I, Kirchman PA, Chuard R, Pfefferli M, Jiang JC, Jazwinski SM, Conzelmann A: C26-CoA-dependent ceramide synthesis of Saccharomyces cerevisiae is operated by Lag1p and Lac1p. EMBO J 2001, 20: 2655–2665. 10.1093/emboj/20.11.2655CrossRefPubMedPubMedCentral Guillas I, Kirchman PA, Chuard R, Pfefferli M, Jiang JC, Jazwinski SM, Conzelmann A: C26-CoA-dependent ceramide synthesis of Saccharomyces cerevisiae is operated by Lag1p and Lac1p. EMBO J 2001, 20: 2655–2665. 10.1093/emboj/20.11.2655CrossRefPubMedPubMedCentral
34.
go back to reference Mizutani Y, Kihara A, Igarashi Y: Mammalian Lass6 and its related family members regulate synthesis of specific ceramides. Biochem J 2005, 390: 263–271. 10.1042/BJ20050291CrossRefPubMedPubMedCentral Mizutani Y, Kihara A, Igarashi Y: Mammalian Lass6 and its related family members regulate synthesis of specific ceramides. Biochem J 2005, 390: 263–271. 10.1042/BJ20050291CrossRefPubMedPubMedCentral
35.
go back to reference Riebeling C, Allegood JC, Wang E, Merrill AH, Futerman AH: Two mammalian longevity assurance gene (LAG1) family members, trh1 and trh4, regulate dihydroceramide synthesis using different fatty acyl-CoA donors. J Biol Chem 2003, 278: 43452–43459. 10.1074/jbc.M307104200CrossRefPubMed Riebeling C, Allegood JC, Wang E, Merrill AH, Futerman AH: Two mammalian longevity assurance gene (LAG1) family members, trh1 and trh4, regulate dihydroceramide synthesis using different fatty acyl-CoA donors. J Biol Chem 2003, 278: 43452–43459. 10.1074/jbc.M307104200CrossRefPubMed
36.
go back to reference Venkataraman K, Riebeling C, Bodennec J, Riezman H, Allegood JC, Sullards MC, Merrill AH, Futerman AH: Upstream of growth and differentiation factor 1 (uog1), a mammalian homolog of the yeast Longevity Assurance Gene 1 (LAG1), regulatesN-Stearoyl-sphinganine (C18-(Dihydro) ceramide) synthesis in a fumonisin B1-independent manner in mammalian cells. J Biol Chem 2002, 277: 35642–35649. 10.1074/jbc.M205211200CrossRefPubMed Venkataraman K, Riebeling C, Bodennec J, Riezman H, Allegood JC, Sullards MC, Merrill AH, Futerman AH: Upstream of growth and differentiation factor 1 (uog1), a mammalian homolog of the yeast Longevity Assurance Gene 1 (LAG1), regulatesN-Stearoyl-sphinganine (C18-(Dihydro) ceramide) synthesis in a fumonisin B1-independent manner in mammalian cells. J Biol Chem 2002, 277: 35642–35649. 10.1074/jbc.M205211200CrossRefPubMed
37.
go back to reference Mizutani Y, Kihara A, Igarashi Y: LASS3 (longevity assurance homologue 3) is a mainly testis-specific (dihydro) ceramide synthase with relatively broad substrate specificity. Biochem J 2006, 398: 531–538. 10.1042/BJ20060379CrossRefPubMedPubMedCentral Mizutani Y, Kihara A, Igarashi Y: LASS3 (longevity assurance homologue 3) is a mainly testis-specific (dihydro) ceramide synthase with relatively broad substrate specificity. Biochem J 2006, 398: 531–538. 10.1042/BJ20060379CrossRefPubMedPubMedCentral
38.
go back to reference Thomas RL, Matsko CM, Lotze MT, Amoscato AA: Mass spectrometric identification of increased C16 ceramide levels during apoptosis. J Biol Chem 1999, 274: 30580–30588. 10.1074/jbc.274.43.30580CrossRefPubMed Thomas RL, Matsko CM, Lotze MT, Amoscato AA: Mass spectrometric identification of increased C16 ceramide levels during apoptosis. J Biol Chem 1999, 274: 30580–30588. 10.1074/jbc.274.43.30580CrossRefPubMed
39.
go back to reference Kroesen B-J, Jacobs S, Pettus BJ, Sietsma H, Kok JW, Hannun YA, de Leij LFMH: BcR-induced apoptosis involves differential regulation of C16 and C24-ceramide formation and sphingolipid-dependent activation of the proteasome. J Biol Chem 2003, 278: 14723–14731. 10.1074/jbc.M210756200CrossRefPubMed Kroesen B-J, Jacobs S, Pettus BJ, Sietsma H, Kok JW, Hannun YA, de Leij LFMH: BcR-induced apoptosis involves differential regulation of C16 and C24-ceramide formation and sphingolipid-dependent activation of the proteasome. J Biol Chem 2003, 278: 14723–14731. 10.1074/jbc.M210756200CrossRefPubMed
40.
go back to reference Ben-David O, Futerman AH: The role of the ceramide acyl chain length in neurodegeneration: involvement of ceramide synthases. Neuromolecular Med 2010, 12: 341–350. 10.1007/s12017-010-8114-xCrossRefPubMed Ben-David O, Futerman AH: The role of the ceramide acyl chain length in neurodegeneration: involvement of ceramide synthases. Neuromolecular Med 2010, 12: 341–350. 10.1007/s12017-010-8114-xCrossRefPubMed
41.
go back to reference Becker I, Wang-Eckhardt L, Yaghootfam A, Gieselmann V, Eckhardt M: Differential expression of (dihydro) ceramide synthases in mouse brain: oligodendrocyte-specific expression of CerS2/Lass2. Histochem Cell Biol 2008, 129: 233–241. 10.1007/s00418-007-0344-0CrossRefPubMed Becker I, Wang-Eckhardt L, Yaghootfam A, Gieselmann V, Eckhardt M: Differential expression of (dihydro) ceramide synthases in mouse brain: oligodendrocyte-specific expression of CerS2/Lass2. Histochem Cell Biol 2008, 129: 233–241. 10.1007/s00418-007-0344-0CrossRefPubMed
42.
go back to reference Imgrund S, Hartmann D, Farwanah H, Eckhardt M, Sandhoff R, Degen J, Gieselmann V, Sandhoff K, Willecke K: Adult ceramide synthase 2 (CERS2)-deficient mice exhibit myelin sheath defects, cerebellar degeneration, and hepatocarcinomas. J Biol Chem 2009, 284: 33549–33560. 10.1074/jbc.M109.031971CrossRefPubMedPubMedCentral Imgrund S, Hartmann D, Farwanah H, Eckhardt M, Sandhoff R, Degen J, Gieselmann V, Sandhoff K, Willecke K: Adult ceramide synthase 2 (CERS2)-deficient mice exhibit myelin sheath defects, cerebellar degeneration, and hepatocarcinomas. J Biol Chem 2009, 284: 33549–33560. 10.1074/jbc.M109.031971CrossRefPubMedPubMedCentral
43.
go back to reference Campbell BC, McLean CA, Culvenor JG, Gai WP, Blumbergs PC, Jakala P, Beyreuther K, Masters CL, Li QX: The solubility of alpha-synuclein in multiple system atrophy differs from that of dementia with Lewy bodies and Parkinson’s disease. J Neurochem 2001, 76: 87–96. 10.1046/j.1471-4159.2001.00021.xCrossRefPubMed Campbell BC, McLean CA, Culvenor JG, Gai WP, Blumbergs PC, Jakala P, Beyreuther K, Masters CL, Li QX: The solubility of alpha-synuclein in multiple system atrophy differs from that of dementia with Lewy bodies and Parkinson’s disease. J Neurochem 2001, 76: 87–96. 10.1046/j.1471-4159.2001.00021.xCrossRefPubMed
44.
go back to reference Culvenor JG, McLean CA, Cutt S, Campbell BC, Maher F, Jakala P, Hartmann T, Beyreuther K, Masters CL, Li QX: Non-Abeta component of Alzheimer’s disease amyloid (NAC) revisited. NAC and alpha-synuclein are not associated with Abeta amyloid. Am J Pathol 1999, 155: 1173–1181. 10.1016/S0002-9440(10)65220-0CrossRefPubMedPubMedCentral Culvenor JG, McLean CA, Cutt S, Campbell BC, Maher F, Jakala P, Hartmann T, Beyreuther K, Masters CL, Li QX: Non-Abeta component of Alzheimer’s disease amyloid (NAC) revisited. NAC and alpha-synuclein are not associated with Abeta amyloid. Am J Pathol 1999, 155: 1173–1181. 10.1016/S0002-9440(10)65220-0CrossRefPubMedPubMedCentral
45.
go back to reference Miller DW, Johnson JM, Solano SM, Hollingsworth ZR, Standaert DG, Young AB: Absence of alpha-synuclein mRNA expression in normal and multiple system atrophy oligodendroglia. J Neural Transm 2005, 112: 1613–1624. 10.1007/s00702-005-0378-1CrossRefPubMed Miller DW, Johnson JM, Solano SM, Hollingsworth ZR, Standaert DG, Young AB: Absence of alpha-synuclein mRNA expression in normal and multiple system atrophy oligodendroglia. J Neural Transm 2005, 112: 1613–1624. 10.1007/s00702-005-0378-1CrossRefPubMed
46.
go back to reference Mori F, Tanji K, Yoshimoto M, Takahashi H, Wakabayashi K: Demonstration of alpha-synuclein immunoreactivity in neuronal and glial cytoplasm in normal human brain tissue using proteinase K and formic acid pretreatment. Exp Neurol 2002, 176: 98–104. 10.1006/exnr.2002.7929CrossRefPubMed Mori F, Tanji K, Yoshimoto M, Takahashi H, Wakabayashi K: Demonstration of alpha-synuclein immunoreactivity in neuronal and glial cytoplasm in normal human brain tissue using proteinase K and formic acid pretreatment. Exp Neurol 2002, 176: 98–104. 10.1006/exnr.2002.7929CrossRefPubMed
47.
go back to reference Richter-Landsberg C, Gorath M, Trojanowski JQ, Lee VM: alpha-synuclein is developmentally expressed in cultured rat brain oligodendrocytes. J Neurosci Res 2000, 62: 9–14. 10.1002/1097-4547(20001001)62:1<9::AID-JNR2>3.0.CO;2-UCrossRefPubMed Richter-Landsberg C, Gorath M, Trojanowski JQ, Lee VM: alpha-synuclein is developmentally expressed in cultured rat brain oligodendrocytes. J Neurosci Res 2000, 62: 9–14. 10.1002/1097-4547(20001001)62:1<9::AID-JNR2>3.0.CO;2-UCrossRefPubMed
48.
go back to reference Kahle PJ, Neumann M, Ozmen L, Muller V, Jacobsen H, Spooren W, Fuss B, Mallon B, Macklin WB, Fujiwara H, Hasegawa M, Iwatsubo T, Kretzschmar HA, Haass C: Hyperphosphorylation and insolubility of alpha-synuclein in transgenic mouse oligodendrocytes. EMBO Rep 2002, 3: 583–588. 10.1093/embo-reports/kvf109CrossRefPubMedPubMedCentral Kahle PJ, Neumann M, Ozmen L, Muller V, Jacobsen H, Spooren W, Fuss B, Mallon B, Macklin WB, Fujiwara H, Hasegawa M, Iwatsubo T, Kretzschmar HA, Haass C: Hyperphosphorylation and insolubility of alpha-synuclein in transgenic mouse oligodendrocytes. EMBO Rep 2002, 3: 583–588. 10.1093/embo-reports/kvf109CrossRefPubMedPubMedCentral
49.
go back to reference Stefanova N, Reindl M, Neumann M, Haass C, Poewe W, Kahle PJ, Wenning GK: Oxidative stress in transgenic mice with oligodendroglial alpha-synuclein overexpression replicates the characteristic neuropathology of multiple system atrophy. Am J Pathol 2005, 166: 869–876. 10.1016/S0002-9440(10)62307-3CrossRefPubMedPubMedCentral Stefanova N, Reindl M, Neumann M, Haass C, Poewe W, Kahle PJ, Wenning GK: Oxidative stress in transgenic mice with oligodendroglial alpha-synuclein overexpression replicates the characteristic neuropathology of multiple system atrophy. Am J Pathol 2005, 166: 869–876. 10.1016/S0002-9440(10)62307-3CrossRefPubMedPubMedCentral
50.
go back to reference Yazawa I, Giasson BI, Sasaki R, Zhang B, Joyce S, Uryu K, Trojanowski JQ, Lee VM: Mouse model of multiple system atrophy alpha-synuclein expression in oligodendrocytes causes glial and neuronal degeneration. Neuron 2005, 45: 847–859. 10.1016/j.neuron.2005.01.032CrossRefPubMed Yazawa I, Giasson BI, Sasaki R, Zhang B, Joyce S, Uryu K, Trojanowski JQ, Lee VM: Mouse model of multiple system atrophy alpha-synuclein expression in oligodendrocytes causes glial and neuronal degeneration. Neuron 2005, 45: 847–859. 10.1016/j.neuron.2005.01.032CrossRefPubMed
51.
go back to reference Lee HJ, Suk JE, Bae EJ, Lee SJ: Clearance and deposition of extracellular alpha-synuclein aggregates in microglia. Biochem Biophys Res Commun 2008, 372: 423–428. 10.1016/j.bbrc.2008.05.045CrossRefPubMed Lee HJ, Suk JE, Bae EJ, Lee SJ: Clearance and deposition of extracellular alpha-synuclein aggregates in microglia. Biochem Biophys Res Commun 2008, 372: 423–428. 10.1016/j.bbrc.2008.05.045CrossRefPubMed
52.
go back to reference Lee HJ, Suk JE, Patrick C, Bae EJ, Cho JH, Rho S, Hwang D, Masliah E, Lee SJ: Direct transfer of alpha-synuclein from neuron to astroglia causes inflammatory responses in synucleinopathies. J Biol Chem 2010, 285: 9262–9272. 10.1074/jbc.M109.081125CrossRefPubMedPubMedCentral Lee HJ, Suk JE, Patrick C, Bae EJ, Cho JH, Rho S, Hwang D, Masliah E, Lee SJ: Direct transfer of alpha-synuclein from neuron to astroglia causes inflammatory responses in synucleinopathies. J Biol Chem 2010, 285: 9262–9272. 10.1074/jbc.M109.081125CrossRefPubMedPubMedCentral
53.
go back to reference Benes FM, Turtle M, Khan Y, Farol P: Myelination of a key relay zone in the hippocampal formation occurs in the human brain during childhood, adolescence, and adulthood. Arch Gen Psychiatry 1994, 51: 477–484. 10.1001/archpsyc.1994.03950060041004CrossRefPubMed Benes FM, Turtle M, Khan Y, Farol P: Myelination of a key relay zone in the hippocampal formation occurs in the human brain during childhood, adolescence, and adulthood. Arch Gen Psychiatry 1994, 51: 477–484. 10.1001/archpsyc.1994.03950060041004CrossRefPubMed
54.
go back to reference Miller DJ, Duka T, Stimpson CD, Schapiro SJ, Baze WB, McArthur MJ, Fobbs AJ, Sousa AMM, Šestan N, Wildman DE: Prolonged myelination in human neocortical evolution. Proc Natl Acad Sci U S A 2012, 109: 16480–16485. 10.1073/pnas.1117943109CrossRefPubMedPubMedCentral Miller DJ, Duka T, Stimpson CD, Schapiro SJ, Baze WB, McArthur MJ, Fobbs AJ, Sousa AMM, Šestan N, Wildman DE: Prolonged myelination in human neocortical evolution. Proc Natl Acad Sci U S A 2012, 109: 16480–16485. 10.1073/pnas.1117943109CrossRefPubMedPubMedCentral
Metadata
Title
Altered lipid levels provide evidence for myelin dysfunction in multiple system atrophy
Authors
Anthony S Don
Jen-Hsiang T Hsiao
Jonathan M Bleasel
Timothy A Couttas
Glenda M Halliday
Woojin Scott Kim
Publication date
01-12-2014
Publisher
BioMed Central
Published in
Acta Neuropathologica Communications / Issue 1/2014
Electronic ISSN: 2051-5960
DOI
https://doi.org/10.1186/s40478-014-0150-6

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