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COP与网格蛋白包被小泡出芽:不同途径,共同方法。

COP and clathrin-coated vesicle budding: different pathways, common approaches.

作者信息

McMahon Harvey T, Mills Ian G

机构信息

MRC Laboratory of Molecular Biology, Hills Road, Cambridge, CB2 2QH, UK.

出版信息

Curr Opin Cell Biol. 2004 Aug;16(4):379-91. doi: 10.1016/j.ceb.2004.06.009.

Abstract

Vesicle and tubule transport containers move proteins and lipids from one membrane system to another. Newly forming transport containers frequently have electron-dense coats. Coats coordinate the accumulation of cargo and sculpt the membrane. Recent advances have shown that components of both COP1 and clathrin-adaptor coats share the same structure and the same motif-based cargo recognition and accessory factor recruitment mechanisms, which leads to insights on conserved aspects of coat recruitment, polymerisation and membrane deformation. These themes point to the way in which evolutionarily conserved features underpin these diverse pathways.

摘要

囊泡和小管运输容器将蛋白质和脂质从一个膜系统转运到另一个膜系统。新形成的运输容器通常有电子致密包被。包被协调货物的积累并塑造膜。最近的进展表明,COP1和网格蛋白衔接蛋白包被的成分具有相同的结构以及基于基序的相同货物识别和辅助因子招募机制,这为包被招募、聚合和膜变形的保守方面提供了见解。这些主题揭示了进化上保守的特征支撑这些不同途径的方式。

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