首页> 外文期刊>Journal of Molecular Biology >The RegB/RegA two-component regulatory system controls synthesis of photosynthesis and respiratory electron transfer components in Rhodobacter capsulatus.
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The RegB/RegA two-component regulatory system controls synthesis of photosynthesis and respiratory electron transfer components in Rhodobacter capsulatus.

机译:RegB / RegA两组分调节系统可控制荚膜红细菌中光合作用和呼吸电子转移组分的合成。

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Recently, we demonstrated that the RegB/RegA two-component regulatory system from Rhodobacter capsulatus functions as a global regulator of metabolic processes that either generate or consume reducing equivalents. For example, the RegB/RegA system controls expression of such energy generating processes as photosynthesis and hydrogen utilization. In addition, RegB/RegA also control nitrogen and carbon fixation pathways that utilize reducing equivalents. Here, we use a combination of DNase I protection and plasmid-based reporter expression studies to demonstrate that RegA directly controls synthesis of cytochrome cbb3 and ubiquinol oxidases that function as terminal electron acceptors in a branched respiratory chain. We also demonstrate that RegA controls expression of cytochromes c2, c(y) and the cytochrome bc1 complex that are involved in both photosynthetic and respiratory electron transfer events. These data provide evidence that the RegB/RegA two-component system has a major role in controlling the synthesis of numerous processes that affect reducing equivalents in Rhodobacter capsulatus.
机译:最近,我们证明了来自荚膜红细菌的RegB / RegA两组分调节系统可作为代谢过程的全局调节器,该过程可产生或消耗还原当量。例如,RegB / RegA系统控制诸如光合作用和氢利用之类的能量产生过程的表达。另外,RegB / RegA还控制利用还原当量的氮和碳固定途径。在这里,我们结合使用DNase I保护和基于质粒的报道基因表达研究来证明RegA直接控制细胞色素cbb3和泛醇氧化酶的合成,后者在分支呼吸链中充当末端电子受体。我们还证明RegA控制着参与光合作用和呼吸电子转移事件的细胞色素c2,c(y)和细胞色素bc1复合物的表达。这些数据提供了证据,证明RegB / RegA两组分系统在控制影响荚膜红球菌还原当量的众多过程的合成中起主要作用。

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