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Structure and function of the Leptospira interrogans peroxide stress regulator (PerR) an atypical PerR devoid of a structural metal-binding site

机译:钩端螺旋体过氧化物应激调节剂(PerR)的结构和功能这是一种不具有结构金属结合位点的非典型PerR

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摘要

Peroxide sensing is essential for bacterial survival during aerobic metabolism and host infection. Peroxide stress regulators (PerRs) are homodimeric transcriptional repressors with each monomer typically containing both structural and regulatory metal-binding sites. PerR binding to gene promoters is controlled by the presence of iron in the regulatory site, and iron-catalyzed oxidation of PerR by H2O2 leads to the dissociation of PerR from DNA. In addition to a regulatory metal, most PerRs require a structural metal for proper dimeric assembly. We present here a structural and functional characterization of the PerR from the pathogenic spirochete Leptospira interrogans, a rare example of PerR lacking a structural metal-binding site. In vivo studies showed that the leptospiral PerR belongs to the peroxide stimulon in pathogenic species and is involved in controlling resistance to peroxide. Moreover, a perR mutant had decreased fitness in other host-related stress conditions, including at 37 °C or in the presence of superoxide anion. In vitro, leptospiral PerR could bind to the perR promoter region in a metal-dependent manner. The crystal structure of the leptospiral PerR revealed an asymmetric homodimer, with one monomer displaying complete regulatory metal coordination in the characteristic caliper-like DNA-binding conformation and the second monomer exhibiting disrupted regulatory metal coordination in an open non-DNA–binding conformation. This structure showed that leptospiral PerR assembles into a dimer in which a metal-induced conformational switch can occur independently in the two monomers. Our study demonstrates that structural metal binding is not compulsory for PerR dimeric assembly and for regulating peroxide stress.
机译:过氧化物感测对于有氧代谢和宿主感染期间的细菌存活至关重要。过氧化物应激调节剂(PerRs)是同型二聚体转录阻遏物,每个单体通常都包含结构性和调节性金属结合位点。 PerR与基因启动子的结合受调节位点铁的存在控制,铁催化的H2O2氧化PerR导致PerR从DNA上解离。除法规金属外,大多数PerR都需要结构金属来进行正确的二聚体组装。我们在这里介绍从致病性螺旋体钩端螺旋体问号的PerR的结构和功能表征,PerR缺乏结构金属结合位点的罕见例子。体内研究表明,钩端螺旋体PerR在病原体中属于过氧化物刺激物,参与控制对过氧化物的抗性。而且,perR突变体在其他与宿主相关的应激条件下,包括在37°C或在超氧阴离子的存在下,其适应性下降。在体外,钩端螺旋体PerR可以金属依赖性的方式结合到perR启动子区域。钩端螺旋体PerR的晶体结构显示出一种不对称的同二聚体,一种单体在特征性的卡尺样DNA结合构象中显示出完全的调控金属配位,第二种单体在开放的非DNA结合构象中显示出破坏的调控金属配位。这种结构表明,钩端螺旋体的PerR组装成一个二聚体,其中金属诱导的构象转换可以在两个单体中独立发生。我们的研究表明,PerR二聚体组装和调节过氧化物应力不是强制性的金属结合。

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