Division of Biological Science, Graduate School of Science, Nagoya University, Nagoya, Japan.
Department of Life Science and Applied Chemistry, Nagoya Institute of Technology, Nagoya, Japan.
Genes Cells. 2024 Apr;29(4):282-289. doi: 10.1111/gtc.13102. Epub 2024 Feb 14.
The flagellar components of Vibrio spp., PomA and PomB, form a complex that transduces sodium ion and contributes to rotate flagella. The transmembrane protein PomB is attached to the basal body T-ring by its periplasmic region and has a plug segment following the transmembrane helix to prevent ion flux. Previously we showed that PomB deleted from E41 to R120 (Δ41-120) was functionally comparable to the full-length PomB. In this study, three deletions after the plug region, PomB (Δ61-120), PomB (Δ61-140), and PomB (Δ71-150), were generated. PomB (Δ61-120) conferred motility, whereas the other two mutants showed almost no motility in soft agar plate; however, we observed some swimming cells with speed comparable for the wild-type cells. When the two PomB mutants were introduced into a wild-type strain, the swimming ability was not affected by the mutant PomBs. Then, we purified the mutant PomAB complexes to confirm the stator formation. When plug mutations were introduced into the PomB mutants, the reduced motility by the deletion was rescued, suggesting that the stator was activated. Our results indicate that the deletions prevent the stator activation and the linker and plug regions, from E41 to S150, are not essential for the motor function of PomB but are important for its regulation.
弧菌属的鞭毛组件,PomA 和 PomB,形成一个复合物,将钠离子转导并有助于旋转鞭毛。跨膜蛋白 PomB 通过其周质区域附着在基底体 T 环上,并具有紧随跨膜螺旋的塞段,以防止离子流。以前我们表明,从 E41 到 R120 缺失的 PomB(Δ41-120)在功能上与全长 PomB 相当。在这项研究中,在塞段之后生成了三个缺失,PomB(Δ61-120)、PomB(Δ61-140)和 PomB(Δ71-150)。PomB(Δ61-120)赋予了运动性,而另外两个突变体在软琼脂平板上几乎没有表现出运动性;然而,我们观察到一些游动细胞的速度与野生型细胞相当。当将这两个 PomB 突变体引入野生型菌株中时,游动能力不受突变 PomB 的影响。然后,我们纯化了突变体 PomAB 复合物以确认定子的形成。当在 PomB 突变体中引入塞突变时,缺失导致的运动性降低得到挽救,表明定子被激活。我们的结果表明,缺失阻止了定子的激活,并且从 E41 到 S150 的接头和塞段对于 PomB 的运动功能不是必需的,但对于其调节很重要。