Department of Physics and Graduate Institute of Biophysics, National Central University, Jhongli, Taiwan, 32001, Republic of China.
Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa-ku, Nagoya, 464-8602, Japan.
Sci Rep. 2018 Jul 24;8(1):11172. doi: 10.1038/s41598-018-29447-x.
Bacterial flagellar motor (BFM) is a protein complex used for bacterial motility and chemotaxis that involves in energy transformation, torque generation and switching. FliL is a single-transmembrane protein associated with flagellar motor function. We performed biochemical and biophysical approaches to investigate the functional roles of FliL associated with stator-units. Firstly, we found the periplasmic region of FliL is crucial for its polar localization. Also, the plug mutation in stator-unit affected the polar localization of FliL implying the activation of stator-unit is important for FliL recruitment. Secondly, we applied single-molecule fluorescent microscopy to study the role of FliL in stator-unit assembly. Using molecular counting by photobleaching, we found the stoichiometry of stator-unit and FliL protein would be 1:1 in a functional motor. Moreover, the turnover time of stator-units are slightly increased in the absence of FliL. By further investigation of protein dynamics on membrane, we found the diffusions of stator-units and FliL are independent. Surprisingly, the FliL diffusion rate without stator-units is unexpectedly slow indicating a protein-complex forming event. Our results suggest that FliL plays a supporting role to the stator in the BFM.
细菌鞭毛马达(Bacterial flagellar motor,BFM)是一种用于细菌运动和趋化性的蛋白质复合物,涉及能量转换、扭矩产生和转换。FliL 是一种与鞭毛马达功能相关的单一跨膜蛋白。我们采用生化和生物物理方法研究了与定子单元相关的 FliL 的功能作用。首先,我们发现 FliL 的周质区域对于其极性定位至关重要。此外,定子单元中的插塞突变会影响 FliL 的极性定位,这表明定子单元的激活对于 FliL 的募集很重要。其次,我们应用单分子荧光显微镜研究了 FliL 在定子单元组装中的作用。通过光漂白的分子计数,我们发现功能性马达中定子单元和 FliL 蛋白的比例为 1:1。此外,在没有 FliL 的情况下,定子单元的周转率略有增加。通过进一步研究膜上的蛋白质动力学,我们发现定子单元和 FliL 的扩散是独立的。令人惊讶的是,没有定子单元时 FliL 的扩散速度出乎意料地慢,表明形成了蛋白质复合物。我们的结果表明,FliL 在 BFM 中对定子起到了支持作用。