Laboratory of Molecular Microbiology, Global Health Institute, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Environ Microbiol. 2019 Jul;21(7):2231-2247. doi: 10.1111/1462-2920.14562. Epub 2019 Mar 12.
Bacteria of the genus Vibrio are common members of aquatic environments where they compete with other prokaryotes and defend themselves against grazing predators. A macromolecular protein complex called the type VI secretion system (T6SS) is used for both purposes. Previous research showed that the sole T6SS of the human pathogen V. cholerae is induced by extracellular (chitin) or intracellular (low c-di-GMP levels) cues and that these cues lead to distinctive signalling pathways for which the proteins TfoX and TfoY serve as master regulators. In this study, we tested whether the TfoX- and TfoY-mediated regulation of T6SS, concomitantly with natural competence or motility, was conserved in non-cholera Vibrio species, and if so, how these regulators affected the production of individual T6SSs in double-armed vibrios. We show that, alongside representative competence genes, TfoX regulates at least one T6SS in all tested Vibrio species. TfoY, on the other hand, fostered motility in all vibrios but had a more versatile T6SS response in that it did not foster T6SS-mediated killing in all tested vibrios. Collectively, our data provide evidence that the TfoX- and TfoY-mediated signalling pathways are mostly conserved in diverse Vibrio species and important for signal-specific T6SS induction.
弧菌属的细菌是水生环境中的常见成员,它们在那里与其他原核生物竞争并保护自己免受掠食性捕食者的侵害。一种称为 VI 型分泌系统 (T6SS) 的大分子蛋白复合物可用于这两个目的。先前的研究表明,人类病原体霍乱弧菌的唯一 T6SS 是由细胞外(几丁质)或细胞内(低 c-di-GMP 水平)信号诱导的,这些信号导致了独特的信号通路,其中 TfoX 和 TfoY 蛋白作为主调节因子。在这项研究中,我们测试了 TfoX 和 TfoY 介导的 T6SS 调节是否与自然感受态或运动性同时存在于非霍乱弧菌物种中,如果存在,这些调节剂如何影响双臂弧菌中单个 T6SS 的产生。我们表明,除了代表性的感受态基因外,TfoX 还调节所有测试的弧菌物种中的至少一种 T6SS。另一方面,TfoY 促进了所有弧菌的运动性,但它对 T6SS 的反应更为多样,因为它并没有促进所有测试的弧菌中的 T6SS 介导的杀伤。总之,我们的数据提供了证据,表明 TfoX 和 TfoY 介导的信号通路在多种弧菌物种中大多是保守的,并且对信号特异性 T6SS 诱导很重要。