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How kinesins walk, assemble and transport: A birds-eye-view of some unresolved questions

机译:驱动蛋白如何行走,组装和运输:鸟瞰一些未解决的问题

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Eukaryotic cells contain an intricate network of microtubule filaments inside. It provides the mechanical support for maintaining cell shape as well as a railway for intracellular traffic. A special class of ATP hydrolyzing enzymes bind microtubule inside the cells and 'walk' along the filament. Kinesins constitute a subset of these so called 'motor' proteins. These are a diverse set of proteins capable of converting the chemical energy of ATP hydrolysis to mechanical force and move from one end of the cell to the other carrying a variety of different cargoes. Although the composition, structure and their force generating mechanism is understood in considerable detail, several questions regarding the mechanism of kinesin mediated transport remained unanswered. Here, in this review, I have provided a brief overview of kinesin structure and functions in different intracellular transports and highlighted some of the key unresolved issues. (c) 2006 Elsevier B.V. All rights reserved.
机译:真核细胞内部含有复杂的微管细丝网络。它为维持细胞形状提供了机械支持,并为细胞内运输提供了一条铁路。一类特殊的ATP水解酶结合细胞内的微管并沿着细丝“行走”。驱动蛋白构成这些所谓的“运动”蛋白的子集。这些蛋白质是多种蛋白质,能够将ATP水解的化学能转化为机械力,并从细胞的一端移动到另一端,并携带各种不同的货物。尽管对组成,结构及其产生力的机理有相当详细的了解,但有关驱动蛋白介导的运输机理的几个问题仍未得到解答。在本文中,我简要介绍了驱动蛋白在不同细胞内转运中的结构和功能,并重点介绍了一些尚未解决的关键问题。 (c)2006 Elsevier B.V.保留所有权利。

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