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主要极性鞭毛决定因子 FlhG 在含端鞭毛螺旋体 Leptospira 中的作用。

Role of the major determinant of polar flagellation FlhG in the endoflagella-containing spirochete Leptospira.

机构信息

Institut Pasteur, Biology of Spirochetes Unit, Paris, France.

Pasteur International Unit, Integrative Microbiology of Zoonotic Agents, Institut Pasteur de Montevideo, Montevideo, Uruguay/Institut Pasteur, Paris, France.

出版信息

Mol Microbiol. 2021 Nov;116(5):1392-1406. doi: 10.1111/mmi.14831. Epub 2021 Oct 30.

Abstract

Spirochetes can be distinguished from other bacteria by their spiral-shaped morphology and subpolar periplasmic flagella. This study focused on FlhF and FlhG, which control the spatial and numerical regulation of flagella in many exoflagellated bacteria, in the spirochete Leptospira. In contrast to flhF which seems to be essential in Leptospira, we demonstrated that flhG mutants in both the saprophyte L. biflexa and the pathogen L. interrogans were less motile than the wild-type strains in gel-like environments but not hyperflagellated as reported previously in other bacteria. Cryo-electron tomography revealed that the distance between the flagellar basal body and the tip of the cell decreased significantly in the flhG mutant in comparison to wild-type and complemented strains. Additionally, comparative transcriptome analyses of L. biflexa flhG and wild-type strains showed that FlhG acts as a negative regulator of transcription of some flagellar genes. We found that the L. interrogans flhG mutant was attenuated for virulence in the hamster model. Cross-species complementation also showed that flhG is not interchangeable between species. Our results indicate that FlhF and FlhG in Leptospira contribute to governing cell motility but our data support the hypothesis that FlhF and FlhG function differently in each bacterial species, including among spirochetes.

摘要

螺旋体可以通过其螺旋形形态和亚极周质鞭毛与其他细菌区分开来。本研究集中于 FlhF 和 FlhG,它们控制着许多外鞭毛细菌中鞭毛的空间和数量调节。与似乎在 Leptospira 中必不可少的 flhF 不同,我们证明了在腐生菌 L. biflexa 和病原体 L. interrogans 中 flhG 突变体在凝胶状环境中的运动性比野生型菌株差,但不像以前在其他细菌中报道的那样过度鞭毛化。冷冻电子断层扫描显示,与野生型和互补菌株相比,flhG 突变体中鞭毛基体和细胞尖端之间的距离显著减小。此外,L. biflexa flhG 和野生型菌株的比较转录组分析表明,FlhG 作为一些鞭毛基因转录的负调节剂发挥作用。我们发现 L. interrogans flhG 突变体在仓鼠模型中的毒力减弱。种间互补也表明 flhG 在物种之间不可互换。我们的结果表明,Leptospira 中的 FlhF 和 FlhG 有助于控制细胞运动性,但我们的数据支持 FlhF 和 FlhG 在每种细菌中的功能不同的假设,包括在螺旋体中。

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