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首页> 外文期刊>Molecular Microbiology >Pho signal transduction network reveals direct transcriptional regulation of one two-component system by another two-component regulator: Bacillus subtilis PhoP directly regulates production of ResD.
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Pho signal transduction network reveals direct transcriptional regulation of one two-component system by another two-component regulator: Bacillus subtilis PhoP directly regulates production of ResD.

机译:Pho信号转导网络揭示了另一种两组分调节剂对一个两组分系统的直接转录调节:枯草芽孢杆菌PhoP直接调节ResD的产生。

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摘要

The Bacillus subtilis ResD-ResE two-component system is responsible for the regulation of a number of genes involved in cytochrome c biogenesis and haem A biosynthesis, and it is required for anaerobic respiration in this organism. We reported previously that the operon encoding these regulatory proteins, the resABCDE operon, is induced under several conditions, one of which is phosphate starvation. We report here that this transcription requires the PhoP-PhoR two-component system, whereas other induction conditions do not. The PhoPP response regulator directly binds to and is essential for transcriptional activation of the resABCDE operon as well as being involved in repression of the internal resDE promoter during phosphate-limited growth. The concentration of ResD in various phoP mutant strains corroborates the role of PhoP in the production of ResD. These interactions result in a regulatory network that ties together the cellular functions of respiration/energy production and phosphate starvation. Significantly, this represents the first evidence for direct involvement of one two-component system in transcription of a second two-component system.
机译:枯草芽孢杆菌ResD-ResE两组分系统负责调节细胞色素c的生源和血红素A生物合成中涉及的许多基因,这是该生物体厌氧呼吸所必需的。我们以前报道过,编码这些调节蛋白的操纵子,resABCDE操纵子,在几种条件下被诱导,其中之一是磷酸饥饿。我们在这里报告此转录需要PhoP-PhoR两组分系统,而其他诱导条件则不需要。 PhoPP反应调节剂直接与resABCDE操纵子的转录激活结合,并且对于磷酸化限制的生长过程中内部resDE启动子的阻遏是必不可少的。在各种phoP突变菌株中ResD的浓度证实了PhoP在ResD产生中的作用。这些相互作用导致调节网络将呼吸/能量产生和磷酸盐饥饿的细胞功能联系在一起。重要的是,这代表了第一个证据表明一个双组分系统直接参与了第二个双组分系统的转录。

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