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首页> 外文期刊>Environmental microbiology >Identification of genes in the VirR regulon of Pectobacterium atrosepticum and characterization of their roles in quorum sensing-dependent virulence
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Identification of genes in the VirR regulon of Pectobacterium atrosepticum and characterization of their roles in quorum sensing-dependent virulence

机译:鉴定波状芽胞杆菌的VirR调控区中的基因,并表征其在群体感应依赖性毒力中的作用

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Summary: In the economically important phytopathogen, Pectobacterium atrosepticum, expression of plant cell wall degrading enzymes and other virulence determinants is controlled in a cell density-dependent fashion, termed quorum sensing (QS). Canonical QS systems in Gram-negative bacteria contain a LuxI-type protein, synthesizing a signalling molecule, and a LuxR-type regulator, responding to the signalling molecule above threshold concentrations. In P.atrosepticum, the central LuxR-type repressor of virulence, VirR, has been identified and its impacts on virulence characterized. Here we define the broader VirR regulon using chromatin immunoprecipitation (ChIP) and in planta microarrays. Ninety-four direct VirR targets were identified by ChIP microarrays and a consensus VirR binding site was determined. Purified VirR was used in DNA gel shift assays on target promoters and VirR:promoter binding was disrupted by exogenous addition of the signalling molecule, N-(3-oxohexanoyl)-l-homoserine lactone (OHHL). VirR autorepressed, and directly activated the transcription of rsmA in the absence of OHHL. Finally, we showed that VirR directly regulated the production of siderophores and controlled swimming motility. This is the first report characterizing the direct targets of VirR and provides clear evidence that this LuxR-type protein can act in vivo as both an activator and repressor of transcription in the absence of its cognate signalling molecule.
机译:摘要:在具有经济意义的植物病原体土壤杆菌中,植物细胞壁降解酶和其他毒性决定簇的表达以细胞密度依赖性方式控制,称为群体感应(QS)。革兰氏阴性细菌中的规范QS系统包含合成信号分子的LuxI型蛋白和对阈值以上浓度的信号分子做出响应的LuxR型调节剂。在P.atrosepticum中,已经确定了中央LuxR型毒力阻遏物VirR,并表征了其对毒力的影响。在这里,我们使用染色质免疫沉淀(ChIP)和植物微阵列定义了更广泛的VirR调节子。通过ChIP微阵列鉴定了94个直接VirR靶标,并确定了共有的VirR结合位点。纯化的VirR用于靶标启动子的DNA凝胶移位测定中,并且通过外源添加信号分子N-(3-氧代己酰基)-1-高丝氨酸内酯(OHHL)来破坏VirR:启动子结合。在没有OHHL的情况下,VirR自动阻遏并直接激活rsmA的转录。最后,我们证明了VirR直接调节铁载体的产生并控制游泳运动。这是表征VirR直接靶点的第一份报告,并提供了明确的证据表明,在没有相关的信号传导分子的情况下,这种LuxR型蛋白可以在体内充当转录的激活剂和阻遏剂。

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