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Myelin Proteomics: Molecular Anatomy of an Insulating Sheath

机译:髓磷脂蛋白质组学:绝缘鞘的分子解剖。

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摘要

Fast-transmitting vertebrate axons are electrically insulated with multiple layers of nonconductive plasma membrane of glial cell origin, termed myelin. The myelin membrane is dominated by lipids, and its protein composition has historically been viewed to be of very low complexity. In this review, we discuss an updated reference compendium of 342 proteins associated with central nervous system myelin that represents a valuable resource for analyzing myelin biogenesis and white matter homeostasis. Cataloging the myelin proteome has been made possible by technical advances in the separation and mass spectrometric detection of proteins, also referred to as proteomics. This led to the identification of a large number of novel myelin-associated proteins, many of which represent low abundant components involved in catalytic activities, the cytoskeleton, vesicular trafficking, or cell adhesion. By mass spectrometry-based quantification, proteolipid protein and myelin basic protein constitute 17% and 8% of total myelin protein, respectively, suggesting that their abundance was previously overestimated. As the biochemical profile of myelin-associated proteins is highly reproducible, differential proteome analyses can be applied to material isolated from patients or animal models of myelin-related diseases such as multiple sclerosis and leukodystrophies.
机译:快速传播的脊椎动物轴突与神经胶质细胞起源的称为髓磷脂的多层非传导质膜电绝缘。髓磷脂膜主要由脂质组成,从历史上看,其蛋白质组成的复杂性非常低。在这篇综述中,我们讨论了与中枢神经系统髓磷脂相关的342种蛋白的最新参考药典,它是分析髓鞘生物发生和白质稳态的宝贵资源。通过蛋白质分离和质谱检测(也称为蛋白质组学)方面的技术进步,使对髓磷脂蛋白质组进行分类成为可能。这导致鉴定出大量新颖的髓磷脂相关蛋白,其中许多代表参与催化活性,细胞骨架,囊泡运输或细胞粘附的低丰度组分。通过基于质谱的定量,蛋白脂蛋白和髓磷脂碱性蛋白分别占总髓磷脂蛋白的17%和8%,这表明它们的丰度先前被高估了。由于髓磷脂相关蛋白的生化特性具有很高的重现性,因此可以将差异蛋白质组学分析应用于分离自髓鞘相关疾病(例如多发性硬化症和白细胞营养不良)的患者或动物模型的材料。

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