| Literature DB >> 33882274 |
Jiaxing Tan1, Xing Zhang2, Xiaofei Wang3, Caihuang Xu4, Shenghai Chang4, Hangjun Wu4, Ting Wang1, Huihui Liang5, Haichun Gao5, Yan Zhou1, Yongqun Zhu6.
Abstract
The bacterial flagellar motor is a supramolecular protein machine that drives rotation of the flagellum for motility, which is essential for bacterial survival in different environments and a key determinant of pathogenicity. The detailed structure of the flagellar motor remains unknown. Here we present an atomic-resolution cryoelectron microscopy (cryo-EM) structure of the bacterial flagellar motor complexed with the hook, consisting of 175 subunits with a molecular mass of approximately 6.3 MDa. The structure reveals that 10 peptides protruding from the MS ring with the FlgB and FliE subunits mediate torque transmission from the MS ring to the rod and overcome the symmetry mismatch between the rotational and helical structures in the motor. The LP ring contacts the distal rod and applies electrostatic forces to support its rotation and torque transmission to the hook. This work provides detailed molecular insights into the structure, assembly, and torque transmission mechanisms of the flagellar motor.Entities:
Keywords: LP ring; MS ring; bacterial flagellar motor; bacterial motility; cryoelectron microscopy; export apparatus; flagellum; hook; rod; torque transmission
Mesh:
Year: 2021 PMID: 33882274 DOI: 10.1016/j.cell.2021.03.057
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582