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首页> 外文期刊>Journal of bacteriology >Expression of Uptake Hydrogenase and Molybdenum Nitrogenase in Rhodobacter capsulatus Is Coregulated by the RegB-RegA Two-Component Regulatory System
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Expression of Uptake Hydrogenase and Molybdenum Nitrogenase in Rhodobacter capsulatus Is Coregulated by the RegB-RegA Two-Component Regulatory System

机译:RegB-RegA两组分调节系统可调节荚膜红球菌中摄取氢酶和钼氮酶的表达

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摘要

Purple photosynthetic bacteria are capable of generating cellular energy from several sources, including photosynthesis, respiration, and H2 oxidation. Under nutrient-limiting conditions, cellular energy can be used to assimilate carbon and nitrogen. This study provides the first evidence of a molecular link for the coregulation of nitrogenase and hydrogenase biosynthesis in an anoxygenic photosynthetic bacterium. We demonstrated that molybdenum nitrogenase biosynthesis is under the control of the RegB-RegA two-component regulatory system in Rhodobacter capsulatus. Footprint analyses and in vivo transcription studies showed that RegA indirectly activates nitrogenase synthesis by binding to and activating the expression of nifA2, which encodes one of the two functional copies of the nif-specific transcriptional activator, NifA. Expression of nifA2 but notnifA1 is reduced in the reg mutants up to eightfold under derepressing conditions and is also reduced under repressing conditions. Thus, although NtrC is absolutely required fornifA2 expression, RegA acts as a coactivator ofnifA2. We also demonstrated that in regmutants, [NiFe]hydrogenase synthesis and activity are increased up to sixfold. RegA binds to the promoter of the hydrogenase gene operon and therefore directly represses its expression. Thus, the RegB-RegA system controls such diverse processes as energy-generating photosynthesis and H2 oxidation, as well as the energy-demanding processes of N2 fixation and CO2 assimilation.
机译:紫色光合细菌能够从多种来源产生细胞能量,包括光合作用,呼吸作用和H 2 氧化。在营养有限的条件下,细胞能量可用于吸收碳和氮。这项研究提供了第一个证据,证明了在产氧光合细菌中,固氮酶和氢化酶生物合成的分子调控。我们证明了钼固氮酶的生物合成受荚膜红细菌RegB-RegA两组分调节系统的控制。足迹分析和体内转录研究表明,RegA通过与 nifA2 结合并激活其表达而间接激活固氮酶的合成,该表达编码 nif -的两个功能拷贝之一特异性转录激活因子NifA。在 reg 突变体中, nifA2 而不是 nifA1 的表达在去抑制条件下降低多达八倍,在抑制条件下也降低。因此,尽管> nifA2 表达绝对需要NtrC,但是RegA充当 nifA2 的共激活因子。我们还证明了在 reg 突变体中,[NiFe]氢化酶的合成和活性提高了六倍。 RegA与加氢酶基因操纵子的启动子结合,因此直接抑制其表达。因此,RegB-RegA系统控制着多种过程,例如产生能量的光合作用和H 2 的氧化,以及N 2 固定和CO < sub> 2 同化。

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