Laboratory of Molecular Microbiology, Global Health Institute, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
ISME J. 2022 Jul;16(7):1868-1872. doi: 10.1038/s41396-022-01234-7. Epub 2022 Apr 11.
Vibrio cholerae is a well-studied human pathogen that is also a common inhabitant of marine habitats. In both environments, the bacterium is subject to interbacterial competition. A molecular nanomachine that is often involved in such competitive behavior is the type VI secretion system (T6SS). Interestingly and in contrast to non-pandemic or environmental isolates, the T6SS of the O1 El Tor clade of V. cholerae, which is responsible for the ongoing 7th cholera pandemic, is largely silent under standard laboratory culture conditions. Instead, these strains induce their full T6SS capacity only under specific conditions such as growth on chitinous surfaces (signaled through TfoX and QstR) or when the cells encounter low intracellular c-di-GMP levels (TfoY-driven). In this study, we identified a single nucleotide polymorphism (SNP) within an intergenic region of the major T6SS gene cluster of V. cholerae that determines the T6SS status of the cell. We show that SNP conversion is sufficient to induce T6SS production in numerous pandemic strains, while the converse approach renders non-pandemic/environmental V. cholerae strains T6SS-silent. We further demonstrate that SNP-dependent T6SS production occurs independently of the known T6SS regulators TfoX, QstR, and TfoY. Finally, we identify a putative promoter region adjacent to the identified SNP that is required for all forms of T6SS regulation in V. cholerae.
霍乱弧菌是一种研究充分的人类病原体,也是海洋生境中的常见居民。在这两种环境中,细菌都受到细菌间的竞争。一种经常参与这种竞争行为的分子纳米机器是 VI 型分泌系统(T6SS)。有趣的是,与非流行株或环境分离株不同,引起当前第七次霍乱大流行的 O1 El Tor 霍乱弧菌的 T6SS 在标准实验室培养条件下基本上处于沉默状态。相反,这些菌株仅在特定条件下诱导其完整的 T6SS 能力,例如在几丁质表面上生长(通过 TfoX 和 QstR 信号)或当细胞遇到低细胞内 c-di-GMP 水平(TfoY 驱动)时。在这项研究中,我们在霍乱弧菌主要 T6SS 基因簇的一个基因间区域中鉴定出一个单核苷酸多态性(SNP),该 SNP 决定了细胞的 T6SS 状态。我们表明 SNP 转换足以诱导众多流行株产生 T6SS,而相反的方法使非流行株/环境霍乱弧菌株 T6SS 沉默。我们进一步证明 SNP 依赖性 T6SS 产生独立于已知的 T6SS 调节剂 TfoX、QstR 和 TfoY。最后,我们确定了与鉴定的 SNP 相邻的一个推定启动子区域,该区域是霍乱弧菌中所有形式的 T6SS 调节所必需的。