首页> 美国卫生研究院文献>Journal of Bacteriology >The VirR Response Regulator from Clostridium perfringens Binds Independently to Two Imperfect Direct Repeats Located Upstream of the pfoA Promoter
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The VirR Response Regulator from Clostridium perfringens Binds Independently to Two Imperfect Direct Repeats Located Upstream of the pfoA Promoter

机译:来自产气荚膜梭菌的VirR反应调节剂独立绑定到位于pfoA启动子上游的两个不完美的直接重复序列

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摘要

Regulation of toxin production in the gram-positive anaerobe Clostridium perfringens occurs at the level of transcription and involves a two-component signal transduction system. The sensor histidine kinase is encoded by the virS gene, while its cognate response regulator is encoded by the virR gene. We have constructed a VirR expression plasmid in Escherichia coli and purified the resultant His-tagged VirR protein. Gel mobility shift assays demonstrated that VirR binds to the region upstream of the pfoA gene, which encodes perfringolysin O, but not to regions located upstream of the VirR-regulated plc, colA, and pfoR genes, which encode alpha-toxin, collagenase, and a putative pfoA regulator, respectively. The VirR binding site was shown by DNase I footprinting to be a 52-bp core sequence situated immediately upstream of the pfoA promoter. When this region was deleted, VirR was no longer able to bind to the pfoA promoter. The binding site was further localized to two imperfect direct repeats (CCCAGTTNTNCAC) by site-directed mutagenesis. Binding and protection analysis of these mutants indicated that VirR had the ability to bind independently to the two repeated sequences. Based on these observations it is postulated that the VirR positively regulates the synthesis of perfringolysin O by binding directly to a region located immediately upstream of the pfoA promoter and activating transcription.
机译:革兰氏阳性厌氧菌产气荚膜梭菌中毒素产生的调节发生在转录水平,涉及两组分信号转导系统。传感器组氨酸激酶由virS基因编码,而其同源应答调节因子由virR基因编码。我们已经在大肠杆菌中构建了VirR表达质粒,并纯化了所得的带His标签的VirR蛋白。凝胶迁移率迁移分析表明,VirR结合到编码穿孔菌素O的pfoA基因上游区域,但不结合到编码α-毒素,胶原酶和VirR调节的plc,colA和pfoR基因上游的区域。推定的pfoA调节剂。 DNase I足迹显示VirR结合位点是紧接pfoA启动子上游的52 bp核心序列。当该区域被删除时,VirR不再能够与pfoA启动子结合。通过定点诱变将结合位点进一步定位于两个不完美的直接重复序列(CCCAGTTNTNCAC)。这些突变体的结合和保护分析表明,VirR具有独立结合两个重复序列的能力。基于这些观察结果,推测VirR通过直接结合至紧接在pfoA启动子上游的区域并激活转录来正向调节穿孔蛋白溶酶O的合成。

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