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首页> 外文期刊>The Journal of Biochemistry >Construction of functional fragments of the cytoplasmic loop with the C-terminal region of PomA, a stator component of the Vibrio Na+ driven flagellar motor
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Construction of functional fragments of the cytoplasmic loop with the C-terminal region of PomA, a stator component of the Vibrio Na+ driven flagellar motor

机译:具有PomA的C端区域的细胞质环功能片段的构建,PomA是弧菌Na +驱动的鞭毛马达的定子组件

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摘要

The membrane motor proteins, PomA (polar flagellar motility protein A) and PomB (polar flagellar motility protein B), of Vibrio alginolyticus form a stator complex that converts energy from the ion flow to mechanical work in bacterial flagellar motors. The cytoplasmic domain of PomA is believed to interact with the rotor protein FliG to make a torque. In this study, to investigate the function of the cytoplasmic domain of PomA, we constructed a series of fragments that flank the cytoplasmic loop of PomA between the second and third transmembrane (TM) domains (A-loop) and the C-terminal region, and expressed them in Escherichia coli together with PomA and PotB (a chimeric protein of PomB and MotB). We observed a dominant-negative effect of one PomA fragment on motility. We confirmed that these PomA fragments localized both in the membrane fraction and in the cytoplasmic fraction, and induced bacterial growth delay. Effect of additional point and deletion mutations into this fragment implies that the C-terminal region and TM domains used as a linker play a significant part in these observations. From these results, we conclude that the PomA fragments retain the structure important for functions. We expect that further constructions will provide a variety of experimental approaches to characterize the interaction between PomA and FliG.
机译:溶藻弧菌的膜运动蛋白PomA(极鞭毛运动蛋白A)和PomB(极鞭毛运动蛋白B)形成了一个定子复合物,该复合物将能量从离子流转换为细菌鞭毛运动中的机械功。认为PomA的胞质结构域与转子蛋白FliG相互作用以产生扭矩。在这项研究中,为了研究PomA的胞质结构域的功能,我们构建了一系列片段,这些片段位于PomA的胞质环的第二个和第三个跨膜(TM)域(A环)和C端区域之间,并将它们与PomA和PotB(PomB和MotB的嵌合蛋白)一起在大肠杆菌中表达。我们观察到一个PomA片段对运动的显性负作用。我们证实,这些PomA片段既位于膜部分又位于细胞质部分,并且引起细菌生长延迟。在该片段中附加的点和缺失突变的影响意味着在这些观察中,用作接头的C末端区域和TM结构域起着重要的作用。从这些结果可以得出结论,PomA片段保留了对功能重要的结构。我们希望进一步的构建将提供各种实验方法来表征PomA和FliG之间的相互作用。

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