首页> 外文期刊>Environmental microbiology >FliS modulates FlgM activity by acting as a non-canonical chaperone to control late flagellar gene expression, motility and biofilm formation in Yersinia pseudotuberculosis
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FliS modulates FlgM activity by acting as a non-canonical chaperone to control late flagellar gene expression, motility and biofilm formation in Yersinia pseudotuberculosis

机译:FliS通过充当非典型的伴侣来控制假性耶尔森氏菌的晚期鞭毛基因表达,运动性和生物膜形成,从而调节FlgM活性。

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摘要

The FlgM–FliA regulatory circuit plays a central role in coordinating bacterial flagellar assembly. In this study, we identified multiple novel binding partners of FlgM using bacterial two-hybrid screening. Among these binding partners, FliS, the secretion chaperone of the filament protein FliC, was identified to compete with FliA for the binding of FlgM. We further showed that by binding to FlgM, FliS protects it from secretion and degradation, thus maintaining an intracellular pool of FlgM reserved as the FliS–FlgM complex. Consequently, we found that the flagellar late-class promoter activities are significantly increased in the fliS deletion mutant. The fliS mutant is weakly motile and shows significantly increased biofilm formation on biotic surface. Based on the results obtained, we established for the first time the regulatory role of the flagellin chaperone FliS to fine-tune late flagellar assembly by modulating FlgM activity.
机译:FlgM–FliA调节电路在协调细菌鞭毛装配中起着核心作用。在这项研究中,我们使用细菌双杂交筛选确定了FlgM的多个新型结合伴侣。在这些结合伴侣中,FliS(细丝蛋白FliC的分泌伴侣)被确定与FliA竞争FlgM的结合。我们进一步表明,通过与FlgM结合,FliS可以保护它免受分泌和降解的影响,从而保持FlgM的细胞内池保留为FliS-FlgM复合物。因此,我们发现在fliS缺失突变体中鞭毛晚期启动子活性显着增加。 fliS突变体运动较弱,并在生物表面上显示出明显增加的生物膜形成。基于获得的结果,我们首次建立了鞭毛蛋白伴侣FliS通过调节FlgM活性来微调晚期鞭毛装配的调节作用。

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