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String and knots:Tying clathrin to membranes

机译:绳结:将网格蛋白附着在膜上

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摘要

The transfer of macromolecules on the secretory and endocytic pathways occurs by the trafficking of membrane-bound vesicles between donor and acceptor compartments. These transport vesicles are classified according to the makeup of the protein coat that surrounds them during their genesis and early life.The best characterized class of coated vesicles are the clathrin-coated vesicles (CCVs).The formation of clathrin-coated transport vesicles requires, in general, three components. The first of these is the polyhedral clathrin coat, which serves as a scaffold with multiple points of attachment for the second component ?the adaptors.These link the protein cargo that is embedded in the membrane and/or specific phospholipid components of the membrane with the clathrin coat.The final component comprises a number of proteins that play accessory roles in vesicle genesis and subsequent steps including nucleation of coat formation, recruitment of cargo, membrane deformation, modification of phospholipid head-groups and the tethering and targeting of the completed vesicle. There are many proteins with varied structures that carry out these roles, and their functions are generally less well understood than either clathrin or the adaptors. For a review of clathrin-mediated endocytosis, see Brodsky et al..
机译:大分子在分泌途径和内吞途径上的转移通过供体和受体区室之间膜结合的囊泡的运输发生。这些转运囊泡根据其形成和早期生命过程中围绕的蛋白质外壳的组成进行分类。最具特色的包被囊泡类型是网格蛋白包被囊泡(CCV)。通常,由三个部分组成。其中第一个是多面体网格蛋白涂层,它可作为具有第二个成分(即衔接子)的多个连接点的支架。它们将包埋在膜中的蛋白质货物和/或膜的特定磷脂成分与网格蛋白包衣。最终成分包括许多蛋白质,这些蛋白质在囊泡的形成和后续步骤中起辅助作用,包括成核的形成,货物的募集,膜变形,磷脂头基的修饰以及完成的囊泡的束缚和靶向。有许多具有不同结构的蛋白质可以发挥这些作用,并且其功能通常不如网格蛋白或衔接子好。有关网格蛋白介导的内吞作用的综述,请参见Brodsky等。

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