Swarming regulation is complicated in flagellated bacteria, especially those possessing dual flagellar systems. It remains unclear whether and how the movement of the constitutive polar flagellum is regulated during swarming motility of these bacteria. Here, we report the downregulation of polar flagellar motility by the c-di-GMP effector FilZ in the marine sedimentary bacterium Pseudoalteromonas sp. SM9913. Strain SM9913 possesses two flagellar systems, and filZ is located in the lateral flagellar gene cluster. The function of FilZ is negatively controlled by intracellular c-di-GMP. Swarming in strain SM9913 consists of three periods. Deletion and overexpression of filZ revealed that, during the period when strain SM9913 expands quickly, FilZ facilitates swarming. In vitro pull-down and bacterial two-hybrid assays suggested that, in the absence of c-di-GMP, FilZ interacts with the CheW homolog A2230, which may be involved in the chemotactic signal transduction pathway to the polar flagellar motor protein FliM(p), to interfere with polar flagellar motility. When bound to c-di-GMP, FilZ loses its ability to interact with A2230. Bioinformatic investigation indicated that filZ-like genes are present in many bacteria with dual flagellar systems. Our findings demonstrate a novel mode of regulation of bacterial swarming motility.
The FilZ Protein Contains a Single PilZ Domain and Facilitates the Swarming Motility of Pseudoalteromonas sp. SM9913.
FilZ 蛋白含有一个 PilZ 结构域,能够促进假交替单胞菌 SM9913 的群体运动
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作者:Sheng Qi, Liu Ang, Yang Peiling, Chen Zhuowei, Wang Peng, Sun Haining, Li Chunyang, McMinn Andrew, Chen Yin, Zhang Yuzhong, Su Hainan, Chen Xiulan, Zhang Yuqiang
| 期刊: | Microorganisms | 影响因子: | 4.200 |
| 时间: | 2023 | 起止号: | 2023 Jun 13; 11(6):1566 |
| doi: | 10.3390/microorganisms11061566 | 研究方向: | 其它 |
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