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首页> 外文期刊>Current Opinion in Neurobiology >Lipids, lipid modification and lipid-protein interaction in membrane budding and fission--insights from the roles of endophilin A1 and synaptophysin in synaptic vesicle endocytosis.
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Lipids, lipid modification and lipid-protein interaction in membrane budding and fission--insights from the roles of endophilin A1 and synaptophysin in synaptic vesicle endocytosis.

机译:膜发芽和裂变中的脂质,脂质修饰和脂质-蛋白质相互作用-从内啡肽A1和突触素在突触囊泡内吞作用中的作用来考察。

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摘要

Studies on the endocytosis of synaptic vesicles have provided two novel insights into the mechanism of vesicle formation from donor membranes, both of which concern lipids. One is the essential role of endophilin, a cytosolic protein converting lysophosphatidic acid by addition of the fatty acid arachidonate into phosphatidic acid. The other is the essential role of membrane cholesterol, which specifically interacts with synaptophysin, the major transmembrane protein of synaptic vesicles. These findings reveal novel modes of membrane lipid modification and lipid-protein interaction in vesicle biogenesis.
机译:对突触小泡的内吞作用的研究为从供体膜形成小泡的机理提供了两个新颖的见解,两者均涉及脂质。一种是内啡肽的基本作用,内啡肽是一种通过将花生四烯酸脂肪酸添加为磷脂酸而将溶血磷脂酸转化成胞质的蛋白质。另一个是膜胆固醇的重要作用,它与突触小泡蛋白(突触小泡的主要跨膜蛋白)特异性相互作用。这些发现揭示了膜生物修饰中膜脂质修饰和脂蛋白相互作用的新模式。

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