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VI 型分泌系统免疫基因的双重表达谱保护了流行的霍乱弧菌。

Dual expression profile of type VI secretion system immunity genes protects pandemic Vibrio cholerae.

机构信息

Department of Medical Microbiology and Immunology, University of Alberta, Edmonton, Alberta, Canada.

出版信息

PLoS Pathog. 2013;9(12):e1003752. doi: 10.1371/journal.ppat.1003752. Epub 2013 Dec 5.

Abstract

The Vibrio cholerae type VI secretion system (T6SS) assembles as a molecular syringe that injects toxic protein effectors into both eukaryotic and prokaryotic cells. We previously reported that the V. cholerae O37 serogroup strain V52 maintains a constitutively active T6SS to kill other Gram-negative bacteria while being immune to attack by kin bacteria. The pandemic O1 El Tor V. cholerae strain C6706 is T6SS-silent under laboratory conditions as it does not produce T6SS structural components and effectors, and fails to kill Escherichia coli prey. Yet, C6706 exhibits full resistance when approached by T6SS-active V52. These findings suggested that an active T6SS is not required for immunity against T6SS-mediated virulence. Here, we describe a dual expression profile of the T6SS immunity protein-encoding genes tsiV1, tsiV2, and tsiV3 that provides pandemic V. cholerae strains with T6SS immunity and allows T6SS-silent strains to maintain immunity against attacks by T6SS-active bacterial neighbors. The dual expression profile allows transcription of the three genes encoding immunity proteins independently of other T6SS proteins encoded within the same operon. One of these immunity proteins, TsiV2, protects against the T6SS effector VasX which is encoded immediately upstream of tsiV2. VasX is a secreted, lipid-binding protein that we previously characterized with respect to T6SS-mediated virulence towards the social amoeba Dictyostelium discoideum. Our data suggest the presence of an internal promoter in the open reading frame of vasX that drives expression of the downstream gene tsiV2. Furthermore, VasX is shown to act in conjunction with VasW, an accessory protein to VasX, to compromise the inner membrane of prokaryotic target cells. The dual regulatory profile of the T6SS immunity protein-encoding genes tsiV1, tsiV2, and tsiV3 permits V. cholerae to tightly control T6SS gene expression while maintaining immunity to T6SS activity.

摘要

霍乱弧菌的 VI 型分泌系统 (T6SS) 组装成一种分子注射器,将毒性蛋白效应器注入真核和原核细胞。我们之前报道过,霍乱弧菌 O37 血清群菌株 V52 维持着一种组成型激活的 T6SS,以杀死其他革兰氏阴性细菌,同时免受亲缘细菌的攻击。在实验室条件下,大流行的 O1 埃尔托霍乱弧菌菌株 C6706 是 T6SS 沉默的,因为它不产生 T6SS 结构成分和效应器,也不能杀死大肠杆菌猎物。然而,当 T6SS 活性的 V52 接近时,C6706 表现出完全的抗性。这些发现表明,T6SS 介导的毒力的免疫不需要一个活跃的 T6SS。在这里,我们描述了 T6SS 免疫蛋白编码基因 tsiV1、tsiV2 和 tsiV3 的双重表达谱,该表达谱为大流行的霍乱弧菌菌株提供了 T6SS 免疫,允许 T6SS 沉默的菌株对 T6SS 活性的细菌邻居的攻击保持免疫。这种双重表达谱允许独立于同一操纵子中编码的其他 T6SS 蛋白转录编码免疫蛋白的三个基因。这些免疫蛋白之一 TsiV2 可以保护 T6SS 效应因子 VasX,VasX 被编码在 tsiV2 的上游。VasX 是一种分泌的、脂结合蛋白,我们之前已经对其在 T6SS 介导的对社会变形虫 Dictyostelium discoideum 的毒力方面进行了研究。我们的数据表明,vasX 的开放阅读框中存在一个内部启动子,该启动子驱动下游基因 tsiV2 的表达。此外,VasX 被证明与 VasW 一起作用,VasW 是 VasX 的辅助蛋白,破坏原核靶细胞的内膜。T6SS 免疫蛋白编码基因 tsiV1、tsiV2 和 tsiV3 的双重调控谱允许霍乱弧菌严格控制 T6SS 基因表达,同时保持对 T6SS 活性的免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79eb/3857813/b424eaf861ce/ppat.1003752.g001.jpg

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