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首页> 外文期刊>Journal of bacteriology >The Role of PerR in O2-Affected Gene Expression of Clostridium acetobutylicum
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The Role of PerR in O2-Affected Gene Expression of Clostridium acetobutylicum

机译:PerR在丙酮丁醇梭菌O2影响的基因表达中的作用

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In the strict anaerobe Clostridium acetobutylicum, a PerR-homologous protein has recently been identified as being a key repressor of a reductive machinery for the scavenging of reactive oxygen species and molecular O2. In the absence of PerR, the full derepression of its regulon resulted in increased resistance to oxidative stress and nearly full tolerance of an aerobic environment. In the present study, the complementation of a Bacillus subtilis PerR mutant confirmed that the homologous protein from C. acetobutylicum acts as a functional peroxide sensor in vivo. Furthermore, we used a transcriptomic approach to analyze gene expression in the aerotolerant PerR mutant strain and compared it to the O2 stimulon of wild-type C. acetobutylicum. The genes encoding the components of the alternative detoxification system were PerR regulated. Only few other targets of direct PerR regulation were identified, including two highly expressed genes encoding enzymes that are putatively involved in the central energy metabolism. All of them were highly induced when wild-type cells were exposed to sublethal levels of O2. Under these conditions, C. acetobutylicum also activated the repair and biogenesis of DNA and Fe-S clusters as well as the transcription of a gene encoding an unknown CO dehydrogenase-like enzyme. Surprisingly few genes were downregulated when exposed to O2, including those involved in butyrate formation. In summary, these results show that the defense of this strict anaerobe against oxidative stress is robust and by far not limited to the removal of O2 and its reactive derivatives.
机译:在严格的厌氧菌中,最近发现PerR同源蛋白是清除活性氧和清除O 2 分子的还原机制的关键阻遏物。 。在没有PerR的情况下,其regulon的完全抑制会导致对氧化应激的抵抗力增强以及对有氧环境的几乎完全耐受。在本研究中,枯草芽孢杆菌 PerR突变体的互补性证实了 C的同源蛋白。丙酮丁草在体内起功能性过氧化物传感器的作用。此外,我们使用转录组学方法分析了耐氧的PerR突变菌株中的基因表达,并将其与野生型 C的O 2 刺激子进行了比较。乙草胺。编码替代排毒系统成分的基因受到PerR调控。仅确定了直接PerR调节的其他几​​个目标,包括两个高度表达的基因,这些基因编码的酶被假定参与中央能量代谢。当野生型细胞暴露于亚致死水平的O 2 时,它们都被高度诱导。在这些条件下, C。丙酮丁草还激活了DNA和Fe-S簇的修复和生物发生,以及一个编码未知CO脱氢酶样酶的基因的转录。令人惊讶的是,暴露于O 2 的基因很少被下调,包括那些参与丁酸盐形成的基因。总而言之,这些结果表明,这种严格的厌氧菌对氧化应激的防御作用很强,并且到目前为止还不限于去除O 2 及其反应性衍生物。

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