Department of Molecular Biology, Umeå University, Umeå, SE-901 87, Sweden.
Laboratory for Molecular Infection Medicine Sweden (MIMS), Umeå University, Umeå, SE-901 87, Sweden.
Environ Microbiol. 2020 Oct;22(10):4409-4423. doi: 10.1111/1462-2920.15141. Epub 2020 Jul 10.
The type VI nanomachine is critical for Vibrio cholerae to establish infections and to thrive in niches co-occupied by competing bacteria. The genes for the type VI structural proteins are encoded in one large and two small auxiliary gene clusters. VCA0117 (VasH) - a σ -transcriptional activator - is strictly required for functionality of the type VI secretion system since it controls production of the structural protein Hcp. While some strains constitutively produce a functional system, others do not and require specific growth conditions of low temperature and high osmolarity for expression of the type VI machinery. Here, we trace integration of these regulatory signals to the promoter activity of the large gene cluster in which many components of the machinery and VCA0117 itself are encoded. Using in vivo and in vitro assays and variants of VCA0117, we show that activation of the σ -promoters of the auxiliary gene clusters by elevated VCA0117 levels are all that is required to overcome the need for specialized growth conditions. We propose a model in which signal integration via the large operon promoter directs otherwise restrictive levels of VCA0117 that ultimately dictates a sufficient supply of Hcp for completion of a functional type VI secretion system.
VI 型纳米机器对于霍乱弧菌建立感染并在与竞争细菌共同占据的小生境中茁壮成长至关重要。VI 型结构蛋白的基因编码在一个大的和两个小的辅助基因簇中。VCA0117(VasH)——一种 σ 转录激活因子——对于 VI 型分泌系统的功能是严格必需的,因为它控制结构蛋白 Hcp 的产生。虽然一些菌株持续产生功能性系统,但其他菌株则不需要,并且需要低温和高渗透压等特定生长条件才能表达 VI 型机器。在这里,我们追踪这些调节信号的整合到大型基因簇的启动子活性,该基因簇编码了该机器的许多组件和 VCA0117 本身。通过体内和体外测定以及 VCA0117 的变体,我们表明,通过升高的 VCA0117 水平激活辅助基因簇的 σ-启动子足以克服对特殊生长条件的需求。我们提出了一个模型,其中通过大型操纵子启动子进行信号整合指导 VCA0117 的水平,最终决定了足够的 Hcp 供应,以完成功能性 VI 型分泌系统。