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The role of a cytoplasmic loop of MotA in load‐dependent assembly and disassembly dynamics of the MotA/B stator complex in the bacterial flagellar motor

机译:Mota在载荷依赖组装中的细胞质回路在细菌鞭毛马达中的载荷依赖组装和拆卸动力学中的作用

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Summary The proton‐driven flagellar motor of Salmonella enterica can accommodate a dozen MotA/B stators in a load‐dependent manner. The C‐terminal periplasmic domain of MotB acts as a structural switch to regulate the number of active stators in the motor in response to load change. The cytoplasmic loop termed MotA C is responsible for the interaction with a rotor protein, FliG. Here, to test if MotA C is responsible for stator assembly around the rotor in a load‐dependent manner, we analyzed the effect of MotA C mutations, M76V, L78W, Y83C, Y83H, I126F, R131L, A145E and E155K, on motor performance over a wide range of external load. All these MotA C mutations reduced the maximum speed of the motor near zero load, suggesting that they reduce the rate of conformational dynamics of MotA C coupled with proton translocation through the MotA/B proton channel. Dissociation of the stators from the rotor by decrease in the load was facilitated by the M76V, Y83H and A145E mutations compared to the wild‐type motor. The E155K mutation reduced the number of active stators in the motor from 10 to 6 under extremely high load. We propose that MotA C is responsible for load‐dependent assembly and disassembly dynamics of the MotA/B stator units.
机译:发明内容Salmonella Enterica的质子驱动鞭毛电机可以以负载依赖性方式容纳有多个Mota / B定子。 MOTB的C终端周质域用作结构开关,以响应于负载变化调节电机中的有源定子的数量。称为MOTA C的细胞质回路是与转子蛋白的相互作用,葡萄干。这里,为了以负载依赖性方式测试Mota C负责定子组件,我们分析了Mota C突变,M76V,L78W,Y83C,Y83H,I126F,R131L,A145E和E155K对电机性能的影响在各种外部负荷范围内。所有这些Mota C突变都将电机的最大速度降低了零负载附近的最大速度,这表明它们通过Mota / B质子通道降低了与质子易位的Mota C的构象动态速率。通过与野生型电动机相比,通过M76V,Y83H和A145E突变促进来自转子的定位从转子的离解。 E155K突变在极高的负荷下减少了电机中的有源定子的数量。我们建议MOTA C负责MOTA / B定子单元的载荷依赖组装和拆卸动态。

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  • 来源
    《Molecular Microbiology》 |2017年第4期|共13页
  • 作者单位

    Graduate School of Frontier BiosciencesOsaka University 1‐3 YamadaokaSuita Osaka 565‐0871 Japan;

    Graduate School of Frontier BiosciencesOsaka University 1‐3 YamadaokaSuita Osaka 565‐0871 Japan;

    Graduate School of Frontier BiosciencesOsaka University 1‐3 YamadaokaSuita Osaka 565‐0871 Japan;

    Graduate School of Frontier BiosciencesOsaka University 1‐3 YamadaokaSuita Osaka 565‐0871 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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