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全球氧化还原响应RegB/RegA信号转导系统调控嗜酸菌中参与亚铁和无机硫化合物氧化的基因。

The Global Redox Responding RegB/RegA Signal Transduction System Regulates the Genes Involved in Ferrous Iron and Inorganic Sulfur Compound Oxidation of the Acidophilic .

作者信息

Moinier Danielle, Byrne Deborah, Amouric Agnès, Bonnefoy Violaine

机构信息

Laboratoire de Chimie Bactérienne, Institut de Microbiologie de la Méditerranée, Centre National de la Recherche Scientifique, Aix-Marseille UniversitéMarseille, France.

Protein Expression Facility, Institut de Microbiologie de la Méditerranée, Centre National de la Recherche Scientifique, Aix-Marseille UniversitéMarseille, France.

出版信息

Front Microbiol. 2017 Jul 12;8:1277. doi: 10.3389/fmicb.2017.01277. eCollection 2017.

Abstract

The chemical attack of ore by ferric iron and/or sulfuric acid releases valuable metals. The products of these reactions are recycled by iron and sulfur oxidizing microorganisms. These acidophilic chemolithotrophic prokaryotes, among which , grow at the expense of the energy released from the oxidation of ferrous iron and/or inorganic sulfur compounds (ISCs). In , it has been shown that the expression of the genes encoding the proteins involved in these respiratory pathways is dependent on the electron donor and that the genes involved in iron oxidation are expressed before those responsible for ISCs oxidation when both iron and sulfur are present. Since the redox potential increases during iron oxidation but remains stable during sulfur oxidation, we have put forward the hypothesis that the global redox responding two components system RegB/RegA is involved in this regulation. To understand the mechanism of this system and its role in the regulation of the aerobic respiratory pathways in , the binding of different forms of RegA (DNA binding domain, wild-type, unphosphorylated and phosphorylated-like forms of RegA) on the regulatory region of different genes/operons involved in ferrous iron and ISC oxidation has been analyzed. We have shown that the four RegA forms are able to bind specifically the upstream region of these genes. Interestingly, the phosphorylation of RegA did not change its affinity for its cognate DNA. The transcriptional start site of these genes/operons has been determined. In most cases, the RegA binding site(s) was (were) located upstream from the -35 (or -24) box suggesting that RegA does not interfere with the RNA polymerase binding. Based on the results presented in this report, the role of the RegB/RegA system in the regulation of the ferrous iron and ISC oxidation pathways in is discussed.

摘要

三价铁和/或硫酸对矿石的化学侵蚀会释放出有价值的金属。这些反应的产物由铁和硫氧化微生物进行循环利用。这些嗜酸化学自养原核生物,其中 ,以亚铁和/或无机硫化合物(ISC)氧化释放的能量为代价生长。在 中,已表明编码参与这些呼吸途径的蛋白质的基因表达取决于电子供体,并且当铁和硫都存在时,参与铁氧化的基因在负责ISC氧化的基因之前表达。由于铁氧化过程中氧化还原电位升高而硫氧化过程中保持稳定,我们提出了全局氧化还原响应双组分系统RegB/RegA参与此调节的假设。为了了解该系统的机制及其在 中好氧呼吸途径调节中的作用,分析了不同形式的RegA(DNA结合结构域、野生型、未磷酸化和磷酸化样形式的RegA)与参与亚铁和ISC氧化的不同基因/操纵子的调控区域的结合情况。我们已表明这四种RegA形式能够特异性结合这些基因的上游区域。有趣的是,RegA的磷酸化并未改变其对同源DNA的亲和力。已确定了这些基因/操纵子的转录起始位点。在大多数情况下,RegA结合位点位于 -35(或 -24)框上游,这表明RegA不会干扰RNA聚合酶的结合。基于本报告中的结果,讨论了RegB/RegA系统在 中亚铁和ISC氧化途径调节中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01d2/5506826/cebf6f76e8d2/fmicb-08-01277-g0001.jpg

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