Salomon Dor, Klimko John A, Orth Kim
Department of Molecular Biology, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390-8816, USA.
Microbiology (Reading). 2014 Sep;160(Pt 9):1867-1873. doi: 10.1099/mic.0.080028-0. Epub 2014 Jul 1.
The marine bacterium Vibrio parahaemolyticus, a major cause of food-borne gastroenteritis, employs a type VI secretion system 1 (T6SS1), a recently discovered protein secretion system, to combat competing bacteria. Environmental signals such as temperature, salinity, cell density and surface sensing, as well as the quorum-sensing master regulator OpaR, were previously reported to regulate T6SS1 activity and expression. In this work, we set out to identify additional transcription regulators that control the tightly regulated T6SS1 activity. To this end, we determined the effect of deletions in several known virulence regulators and in two regulators encoded within the T6SS1 gene cluster on expression and secretion of the core T6SS component Hcp1 and on T6SS1-mediated anti-bacterial activity. We report that VP1391 and VP1407, transcriptional regulators encoded within the T6SS1 gene cluster, are essential for T6SS1 activity. Moreover, we found that H-NS, a bacterial histone-like nucleoid structuring protein, which mediates transcription silencing of horizontally acquired genes, serves as a repressor of T6SS1. We also show that activation of surface sensing and high salt conditions alleviate the H-NS-mediated repression. Our results shed light on the complex network of environmental signals and transcription regulators that govern the tight regulation over T6SS1 activity.
副溶血性弧菌是一种海洋细菌,也是食源性肠胃炎的主要致病菌,它利用VI型分泌系统1(T6SS1,一种最近发现的蛋白质分泌系统)来对抗竞争性细菌。此前有报道称,诸如温度、盐度、细胞密度和表面感应等环境信号,以及群体感应主调控因子OpaR,均可调节T6SS1的活性和表达。在这项研究中,我们试图鉴定出其他控制T6SS1活性严格调控的转录调节因子。为此,我们确定了几种已知毒力调节因子以及T6SS1基因簇中编码的两种调节因子的缺失对核心T6SS组分Hcp1的表达和分泌以及对T6SS1介导的抗菌活性的影响。我们报告称,T6SS1基因簇中编码的转录调节因子VP1391和VP1407对T6SS1活性至关重要。此外,我们发现H-NS(一种细菌类组蛋白核仁结构蛋白,介导水平获得基因的转录沉默)可作为T6SS1的阻遏物。我们还表明,表面感应的激活和高盐条件可减轻H-NS介导的抑制作用。我们的研究结果揭示了控制T6SS1活性严格调控的复杂环境信号和转录调节因子网络。