School of Biotechnology and Biomolecular Science, UNSW Sydney, Sydney, Australia.
Protein Sci. 2023 Dec;32(12):e4811. doi: 10.1002/pro.4811.
Many bacteria swim driven by an extracellular filament rotated by the bacterial flagellar motor. This motor is powered by the stator complex, MotA MotB , an heptameric complex which forms an ion channel which couples energy from the ion motive force to torque generation. Recent structural work revealed that stator complex consists of a ring of five MotA subunits which rotate around a central dimer of MotB subunits. Transmembrane (TM) domains TM3 and TM4 from MotA combine with the single TM domain from MotB to form two separate ion channels within this complex. Much is known about the ion binding site and ion specificity; however, to date, no modeling has been undertaken to explore the MotB-MotB dimer stability and the role of MotB conformational dynamics during rotation. Here, we modeled the central MotB dimer using coiled-coil engineering and modeling principles and calculated free energies to identify stable states in the operating cycle of the stator. We found three stable coiled-coil states with dimer interface angles of 28°, 56°, and 64°. We tested the effect of strategic mutagenesis on the comparative energy of the states and correlated motility with a specific hierarchy of stability between the three states. In general, our results indicate agreement with existing models describing a 36° rotation step of the MotA pentameric ring during the power stroke and provide an energetic basis for the coordinated rotation of the central MotB dimer based on coiled-coil modeling.
许多细菌通过由细菌鞭毛马达旋转的细胞外细丝进行游动。该马达由定子复合物 MotA-MotB 提供动力,这是一个七聚体复合物,形成一个离子通道,将能量从离子动力势耦合到扭矩产生。最近的结构研究揭示,定子复合物由五个 MotA 亚基的环组成,该环围绕 MotB 亚基的中心二聚体旋转。MotA 的跨膜 (TM) 结构域 TM3 和 TM4 与 MotB 的单个 TM 结构域结合,在该复合物内形成两个独立的离子通道。人们对离子结合位点和离子特异性有了很多了解;然而,迄今为止,尚未进行建模来探索 MotB-MotB 二聚体的稳定性以及 MotB 构象动力学在旋转过程中的作用。在这里,我们使用卷曲螺旋工程和建模原理对中央 MotB 二聚体进行建模,并计算了自由能,以确定定子操作循环中的稳定状态。我们发现了三个稳定的卷曲螺旋状态,二聚体界面角度分别为 28°、56°和 64°。我们测试了策略突变对状态比较能的影响,并将运动性与三个状态之间特定的稳定性层次联系起来。一般来说,我们的结果与描述 MotA 五聚体环在动力冲程中 36°旋转步的现有模型一致,并为基于卷曲螺旋建模的中央 MotB 二聚体的协调旋转提供了能量基础。