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Evidence for Segregation of Sphingomyelin and Cholesterol during Formation of Copi-Coated Vesicles

机译:鞘膜囊泡形成过程中鞘磷脂和胆固醇分离的证据

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摘要

In higher eukaryotes, phospholipid and cholesterol synthesis occurs mainly in the endoplasmic reticulum, whereas sphingomyelin and higher glycosphingolipids are synthesized in the Golgi apparatus. Lipids like cholesterol and sphingomyelin are gradually enriched along the secretory pathway, with their highest concentration at the plasma membrane. How a cell succeeds in maintaining organelle-specific lipid compositions, despite a steady flow of incoming and outgoing transport carriers along the secretory pathway, is not yet clear. Transport and sorting along the secretory pathway of both proteins and most lipids are thought to be mediated by vesicular transport, with coat protein I (COPI) vesicles operating in the early secretory pathway. Although the protein constituents of these transport intermediates are characterized in great detail, much less is known about their lipid content. Using nano-electrospray ionization tandem mass spectrometry for quantitative lipid analysis of COPI-coated vesicles and their parental Golgi membranes, we find only low amounts of sphingomyelin and cholesterol in COPI-coated vesicles compared with their donor Golgi membranes, providing evidence for a significant segregation from COPI vesicles of these lipids. In addition, our data indicate a sorting of individual sphingomyelin molecular species. The possible molecular mechanisms underlying this segregation, as well as implications on COPI function, are discussed.
机译:在高级真核生物中,磷脂和胆固醇的合成主要发生在内质网中,而鞘磷脂和高级糖鞘脂则在高尔基体中合成。脂质(如胆固醇和鞘磷脂)会沿着分泌途径逐渐富集,并在质膜上浓度最高。尽管传入和传出的运输载体沿分泌途径稳定流动,细胞如何成功维持细胞器特异性脂质组成尚不清楚。沿着蛋白质和大多数脂质的分泌途径的转运和分类被认为是通过囊泡转运来介导的,外壳蛋白I(COPI)囊泡在早期分泌途径中起作用。尽管对这些运输中间体的蛋白质成分进行了详细描述,但对其脂质含量的了解却很少。使用纳米电喷雾电离串联质谱对COPI包被的囊泡及其亲代高尔基膜进行定量脂质分析,与供体高尔基膜相比,我们发现COPI包被的囊泡中鞘磷脂和胆固醇含量较低,从而提供了明显隔离的证据这些脂质来自COPI囊泡。另外,我们的数据表明单个鞘磷脂分子种类的排序。讨论了这种分离的潜在分子机制,以及对COPI功能的影响。

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