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Structure of Flagellar Motor Proteins in Complex Allows for Insights into Motor Structure and Switching

机译:鞭毛运动蛋白在复合物中的结构允许深入了解运动结构和转换

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摘要

The flagellar motor is one type of propulsion device of motile bacteria. The cytoplasmic ring (C-ring) of the motor interacts with the stator to generate torque in clockwise and counterclockwise directions. The C-ring is composed of three proteins, FliM, FliN, and FliG. Together they form the “switch complex” and regulate switching and torque generation. Here we report the crystal structure of the middle domain of FliM in complex with the middle and C-terminal domains of FliG that shows the interaction surface and orientations of the proteins. In the complex, FliG assumes a compact conformation in which the middle and C-terminal domains (FliGMC) collapse and stack together similarly to the recently published structure of a mutant of FliGMC with a clockwise rotational bias. This intramolecular stacking of the domains is distinct from the intermolecular stacking seen in other structures of FliG. We fit the complex structure into the three-dimensional reconstructions of the motor and propose that the cytoplasmic ring is assembled from 34 FliG and FliM molecules in a 1:1 fashion.
机译:鞭毛马达是运动细菌的一种推进装置。电机的胞质环(C环)与定子相互作用,以沿顺时针和逆时针方向生成扭矩。 C环由三种蛋白质FliM,FliN和FliG组成。它们共同形成“开关组合体”,并调节开关和扭矩的产生。在这里,我们报告FliM的中间结构域与FliG的中间和C末端结构域复杂的晶体结构,该结构显示了蛋白质的相互作用表面和方向。在复合物中,FliG假定为紧凑构象,其中中间和C末端结构域(FliGMC)折叠并堆叠在一起,类似于最近发布的带有顺时针旋转偏压的FliGMC突变体结构。域的这种分子内堆积不同于在FliG的其他结构中看到的分子间堆积。我们将复杂的结构拟合到电机的三维重建中,并提出细胞质环是由34个FliG和FliM分子以1:1方式组装而成的。

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