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首页> 外文期刊>Journal of bacteriology >The LuxR-Type Regulator VpsT Negatively Controls the Transcription of rpoS, Encoding the General Stress Response Regulator, in Vibrio cholerae Biofilms
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The LuxR-Type Regulator VpsT Negatively Controls the Transcription of rpoS, Encoding the General Stress Response Regulator, in Vibrio cholerae Biofilms

机译:LuxR型调节剂VpsT在霍乱弧菌生物膜中负控制rpoS的转录,编码一般应激反应调节剂。

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Cholera is a waterborne diarrheal disease caused by Vibrio cholerae strains of serogroups O1 and O139. Expression of the general stress response regulator RpoS and formation of biofilm communities enhance the capacity of V. cholerae to persist in aquatic environments. The transition of V. cholerae between free-swimming (planktonic) and biofilm life-styles is regulated by the second messenger cyclic di-GMP (c-di-GMP). We previously reported that increasing the c-di-GMP pool by overexpression of a diguanylate cyclase diminished RpoS expression. Here we show that c-di-GMP repression of RpoS expression is eliminated by deletion of the genes vpsR and vpsT, encoding positive regulators of biofilm development. To determine the mechanism of this regulation, we constructed a strain expressing a vpsT-FLAG allele from native transcription and translation signals. Increasing the c-di-GMP pool induced vpsT-FLAG expression. The interaction between VpsT-FLAG and the rpoS promoter was demonstrated by chromatin immunoprecipitation. Furthermore, purified VpsT interacted with the rpoS promoter in a c-di-GMP-dependent manner. Primer extension analysis identified two rpoS transcription initiation sites located 43 bp (P1) and 63 bp (P2) upstream of the rpoS start codon. DNase I footprinting showed that the VpsT binding site at the rpoS promoter overlaps the primary P1 transcriptional start site. Deletion of vpsT significantly enhanced rpoS expression in V. cholerae biofilms that do not make HapR. This result suggests that VpsT and c-di-GMP contribute to the transcriptional silencing of rpoS in biofilms prior to cells entering the quorum-sensing mode.
机译:霍乱是一种由O1和O139血清群的霍乱弧菌菌株引起的水源性腹泻病。一般应激反应调节剂RpoS的表达和生物膜群落的形成增强了霍乱弧菌在水生环境中持续生存的能力。霍乱弧菌在自由游泳(浮游生物)和生物膜生活方式之间的过渡受第二信使循环双GMP(c-di-GMP)的调节。我们以前曾报道过通过过度表达双鸟苷酸环化酶增加c-di-GMP池减少了RpoS的表达。在这里,我们显示通过删除编码生物膜发育的正调控子的 vpsR vpsT 基因,消除了RpoS表达的c-di-GMP抑制。为了确定这种调节的机制,我们构建了一个从天然转录和翻译信号表达 vpsT -FLAG等位基因的菌株。增加c-di-GMP池诱导的 vpsT -FLAG表达。染色质免疫沉淀证明了VpsT-FLAG与 rpoS 启动子之间的相互作用。此外,纯化的VpsT以依赖c-di-GMP的方式与 rpoS 启动子相互作用。引物延伸分析确定了两个 rpoS 转录起始位点,位于 rpoS 起始密码子上游43 bp(P1)和63 bp(P2)。 DNase I足迹显示 rpoS 启动子上的VpsT结合位点与主要的P1转录起始位点重叠。删除 vpsT 显着增强了不产生HapR的霍乱弧菌生物膜中的 rpoS 表达。该结果表明,在细胞进入群体感应模式之前,VpsT和c-di-GMP有助于生物膜中 rpoS 的转录沉默。

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