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Myelin proteomics: the past, the unexpected and the future

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References

  • Anitei M, Pfeiffer SE. Myelin biogenesis: sorting out protein trafficking. Curr Biol 2006;16(11):R418-21
  • Hartline DK, Colman DR. Rapid conduction and the evolution of giant axons and myelinated fibers. Curr Biol 2007;17(1):R29-35
  • Norton WT, Poduslo SE. Myelination in rat brain: method of myelin isolation. J Neurochem 1973;21(4):749-57
  • Norton WT, Abe T, Poduslo SE, Devries GH. The lipid composition of isolated brain cells and axons. J Neurosci Res 1975;1(1):57-75
  • Fields RD. White matter matters. Sci Am 2008;298(3):42-9
  • Compston A, Coles A. Multiple sclerosis. Lancet 2008;372(9648):1502-17
  • Benito-Leon J, Bermejo-Pareja F. Is the epidemiology of multiple sclerosis changing? Rev Neurol 2010;51(7):385-6
  • Morelli A, Ravera S, Calzia D, Panfoli I. Impairment of heme synthesis in myelin as potential trigger of multiple sclerosis. Med Hypotheses 2012;78(6):707-10
  • Lassmann H. Classification of demyelinating diseases at the interface between etiology and pathogenesis. Curr Opin Neurol 2001;14(3):253-8
  • Berger P, Niemann A, Suter U. Schwann cells and the pathogenesis of inherited motor and sensory neuropathies (Charcot-Marie-Tooth disease). Glia 2006;54(4):243-57
  • Trapp BD, Ransohoff R, Rudick R. Axonal pathology in multiple sclerosis: relationship to neurologic disability. Curr Opin Neurol 1999;12(3):295-302
  • Nave KA. Myelination and support of axonal integrity by glia. Nature 2010;468(7321):244-52
  • Ferguson B, Matyszak MK, Esiri MM, Perry VH. Axonal damage in acute multiple sclerosis lesions. Brain 1997;120(Pt 3):393-9
  • Trapp BD, Nave KA. Multiple sclerosis: an immune or neurodegenerative disorder? Annu Rev Neurosci 2008;31:247-69
  • Ishii A, Dutta R, Wark GM, et al. Human myelin proteome and comparative analysis with mouse myelin. Proc Natl Acad Sci USA 2009;106(34):14605-10
  • Gopalakrishnan G, Awasthi A, Belkaid W, et al. Lipidome and proteome map of myelin membranes. J Neurosci Res 2013;91(3):321-34
  • Taylor CM, Marta CB, Claycomb RJ, et al. Proteomic mapping provides powerful insights into functional myelin biology. Proc Natl Acad Sci USA 2004;101(13):4643-8
  • Vanrobaeys F, Van Coster R, Dhondt G, et al. Profiling of myelin proteins by 2D-gel electrophoresis and multidimensional liquid chromatography coupled to MALDI TOF-TOF mass spectrometry. J Proteome Res 2005;4(6):2283-93
  • Werner SR, Saha JK, Broderick CL, et al. Proteomic analysis of demyelinated and remyelinating brain tissue following dietary cuprizone administration. J Mol Neurosci 2010;42(2):210-25
  • Yamaguchi Y, Miyagi Y, Baba H. Two-dimensional electrophoresis with cationic detergents: a powerful tool for the proteomic analysis of myelin proteins. Part 2: analytical aspects. J Neurosci Res 2008;86(4):766-75
  • Yamaguchi Y, Miyagi Y, Baba H. Two-dimensional electrophoresis with cationic detergents, a powerful tool for the proteomic analysis of myelin proteins. Part 1: technical aspects of electrophoresis. J Neurosci Res 2008;86(4):755-65
  • Patzig J, Jahn O, Tenzer S, et al. Quantitative and integrative proteome analysis of peripheral nerve myelin identifies novel myelin proteins and candidate neuropathy loci. J Neurosci 2011;31(45):16369-86
  • Haley JE, Samuels FG, Ledeen RW. Study of myelin purity in relation to axonal contaminants. Cell Mol Neurobiol 1981;1(2):175-87
  • Larocca JN, Norton WT. Isolation of myelin. Curr Protoc Cell Biol 2007;Chapter 3:Unit3.25
  • Werner HB, Kuhlmann K, Shen S, et al. Proteolipid protein is required for transport of sirtuin 2 into CNS myelin. J Neurosci 2007;27(29):7717-30
  • Ravera S, Panfoli I, Calzia D, et al. Evidence for aerobic ATP synthesis in isolated myelin vesicles. Int J Biochem Cell Biol 2009;41(7):1581-91
  • Lu P, Vogel C, Wang R, et al. Absolute protein expression profiling estimates the relative contributions of transcriptional and translational regulation. Nat Biotechnol 2007;25(1):117-24
  • Taylor CM, Pfeiffer SE. Enhanced resolution of glycosylphosphatidylinositol-anchored and transmembrane proteins from the lipid-rich myelin membrane by two-dimensional gel electrophoresis. Proteomics 2003;3(7):1303-12
  • Molloy MP. Two-dimensional electrophoresis of membrane proteins using immobilized pH gradients. Anal Biochem 2000;280(1):1-10
  • Roth AD, Ivanova A, Colman DR. New observations on the compact myelin proteome. Neuron Glia Biol 2006;2(1):15-21
  • Jahn O, Tenzer S, Werner HB. Myelin proteomics: molecular anatomy of an insulating sheath. Mol Neurobiol 2009;40(1):55-72
  • Langen H, Berndt P, Roder D, et al. Two-dimensional map of human brain proteins. Electrophoresis 1999;20(4-5):907-16
  • De Monasterio-Schrader P, Jahn O, Tenzer S, et al. Systematic approaches to central nervous system myelin. Cell Mol Life Sci 2013;69(17):2879-94
  • Editorial. Method of the Year 2012. Nature Methods 2013;10:1
  • Persson H, Overholm T. Two-dimensional electrophoresis of membrane proteins: separation of myelin proteins. Electrophoresis 1990;11(8):642-8
  • Yamaguchi Y, Pfeiffer SE. Highly basic myelin and oligodendrocyte proteins analyzed by NEPHGE-two-dimensional gel electrophoresis: recognition of novel developmentally regulated proteins. J Neurosci Res 1999;56(2):199-205
  • Mobius W, Patzig J, Nave KA, Werner HB. Phylogeny of proteolipid proteins: divergence, constraints, and the evolution of novel functions in myelination and neuroprotection. Neuron Glia Biol 2008;4(2):111-27
  • Werner HB, Jahn O. Myelin matters: proteomic insights into white matter disorders. Expert Rev Proteomics 2010;7(2):159-64
  • Bruschi M, Musante L, Candiano G, et al. Soft immobilized pH gradient gels in proteome analysis: a follow-up. Proteomics 2003;3(6):821-5
  • Candiano G, Bruschi M, Musante L, et al. Blue silver: a very sensitive colloidal Coomassie G-250 staining for proteome analysis. Electrophoresis 2004;25(9):1327-33
  • Braun RJ, Kinkl N, Beer M, Ueffing M. Two-dimensional electrophoresis of membrane proteins. Anal Bioanal Chem 2007;389(4):1033-45
  • Calzia D, Barabino S, Bianchini P, et al. New findings in ATP supply in rod outer segments: insights for retinopathies. Biol Cell 2013;105(8):345-58
  • Dutta R, Trapp BD. Mechanisms of neuronal dysfunction and degeneration in multiple sclerosis. Prog Neurobiol 2011;93(1):1-12
  • Panfoli I, Ravera S, Bruschi M, et al. Proteomics unravels the exportability of mitochondrial respiratory chains. Expert Rev Proteomics 2011;8(2):231-9
  • Warters RL, Cassidy PB, Sunseri JA, et al. The nuclear matrix shell proteome of human epidermis. J Dermatol Sci 2010;58(2):113-22
  • Nave KA, Trapp BD. Axon-glial signaling and the glial support of axon function. Annu Rev Neurosci 2008;31:535-61
  • Nave KA. Myelination and the trophic support of long axons. Nat Rev Neurosci 2010;11(4):275-83
  • Trajkovic K, Dhaunchak AS, Goncalves JT, et al. Neuron to glia signaling triggers myelin membrane exocytosis from endosomal storage sites. J Cell Biol 2006;172(6):937-48
  • Ravera S, Bartolucci M, Calzia D, et al. Tricarboxylic acid cycle-sustained oxidative phosphorylation in isolated myelin vesicles. Biochimie 2013;95(11):1991-8
  • Morelli A, Ravera S, Panfoli I. Hypothesis of an Energetic Function for Myelin. Cell Biochem Biophys 2011;61(1):179-87
  • Harris JJ, Attwell D. Is myelin a mitochondrion? J Cereb Blood Flow Metab 2013;33(1):33-6
  • Morelli AM, Ravera S, Calzia D, Panfoli I. Hypothesis of lipid-phase-continuity proton transfer for aerobic ATP synthesis. J Cereb Blood Flow Metab 2013;33(12):1838-42
  • Altelaar AF, Munoz J, Heck AJ. Next-generation proteomics: towards an integrative view of proteome dynamics. Nat Rev Genet 2013;14(1):35-48
  • Aebersold R, Mann M. Mass spectrometry-based proteomics. Nature 2003;422(6928):198-207
  • Nagaraj N, Wisniewski JR, Geiger T, et al. Deep proteome and transcriptome mapping of a human cancer cell line. Mol Syst Biol 2011;7:548
  • Timms JF, Cramer R. Difference gel electrophoresis. Proteomics 2008;8(23-24):4886-97
  • Scotcher J, Bythell BJ, Marshall AG. Unequivocal determination of site-specific protein disulfide bond reduction potentials by top-down FTICR MS: characterization of the N- and C-terminal redox-active sites in human thioredoxin 1. Anal Chem 2013;85(19):9164-72
  • Ahlf DR, Thomas PM, Kelleher NL. Developing top down proteomics to maximize proteome and sequence coverage from cells and tissues. Curr Opin Chem Biol 2013;17(5):787-94
  • Mallick P, Kuster B. Proteomics: a pragmatic perspective. Nat Biotechnol 2010;28(7):695-709
  • Nicklay JJ, Harris GA, Schey KL, Caprioli RM. MALDI imaging and in situ identification of integral membrane proteins from rat brain tissue sections. Anal Chem 2013;85(15):7191-6
  • Wisniewski JR, Ostasiewicz P, Mann M. High recovery FASP applied to the proteomic analysis of microdissected formalin fixed paraffin embedded cancer tissues retrieves known colon cancer markers. J Proteome Res 2011;10(7):3040-9
  • Ostasiewicz P, Zielinska DF, Mann M, Wisniewski JR. Proteome, phosphoproteome, and N-glycoproteome are quantitatively preserved in formalin-fixed paraffin-embedded tissue and analyzable by high-resolution mass spectrometry. J Proteome Res 2010;9(7):3688-700
  • Norris JL, Caprioli RM. Imaging Mass Spectrometry: a New Tool for Pathology in a Molecular Age. Proteomics Clin Appl 2013;7(11-12):733-8
  • Everley RA, Kunz RC, Mcallister FE, Gygi SP. Increasing throughput in targeted proteomics assays: 54-plex quantitation in a single mass spectrometry run. Anal Chem 2013;85(11):5340-6
  • Cerciello F, Choi M, Nicastri A, et al. Identification of a seven glycopeptide signature for malignant pleural mesothelioma in human serum by selected reaction monitoring. Clin Proteomics 2013;10(1):16
  • Kim JK, Mastronardi FG, Wood DD, et al. Multiple sclerosis: an important role for post-translational modifications of myelin basic protein in pathogenesis. Mol Cell Proteomics 2003;2(7):453-62
  • Han X, Aslanian A, Yates JR. 3rd. Mass spectrometry for proteomics. Curr Opin Chem Biol 2008;12(5):483-90

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