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细菌鞭毛马达中的运动蛋白复合体。

Motility protein complexes in the bacterial flagellar motor.

作者信息

Tang H, Braun T F, Blair D F

机构信息

Department of Biology, University of Utah, Salt Lake City 84112, USA.

出版信息

J Mol Biol. 1996 Aug 16;261(2):209-21. doi: 10.1006/jmbi.1996.0453.

Abstract

Among the many proteins needed for the assembly and function of bacterial flagella, only five have been suggested to be involved in torque generation. These are MotA, MotB, FliG, FliM and FliN. In this study, we have probed binding interactions among these proteins, by using protein fusions to glutathione S-transferase or to oligo-histidine, in conjunction with co-isolation assays. The results show that FliG, FliM and FliN all bind to each other, and that each also self-associates. MotA and MotB also bind to each other, and MotA interacts, but only weakly, with FliG and FliM. Taken together with previous genetic, physiological and ultrastructural studies, these results provide strong support for the view that FliG, FliM and FliN function together in a complex on the rotor of the flagellar motor, whereas MotA and MotB form a distinct complex that functions as the stator. Torque generation in the flagellar motor is thus likely to involve interactions between these two protein complexes.

摘要

在细菌鞭毛组装和发挥功能所需的众多蛋白质中,仅有五种被认为与扭矩产生有关。它们是MotA、MotB、FliG、FliM和FliN。在本研究中,我们通过使用与谷胱甘肽S-转移酶或寡聚组氨酸融合的蛋白质,并结合共分离测定法,探究了这些蛋白质之间的结合相互作用。结果表明,FliG、FliM和FliN均相互结合,且各自也会发生自缔合。MotA和MotB也相互结合,并且MotA与FliG和FliM相互作用,但作用较弱。结合先前的遗传学、生理学和超微结构研究,这些结果为以下观点提供了有力支持:FliG、FliM和FliN在鞭毛马达的转子上以复合物的形式共同发挥作用,而MotA和MotB形成一个独特的复合物,作为定子发挥功能。因此,鞭毛马达中的扭矩产生可能涉及这两种蛋白质复合物之间的相互作用。

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