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氧化还原调节因子与CtrA磷酸化信号转导途径在[具体内容缺失]中的相互作用。

Interactions among Redox Regulators and the CtrA Phosphorelay in and .

作者信息

Koppenhöfer Sonja, Lang Andrew S

机构信息

Department of Biology, Memorial University of Newfoundland, St John's, NL A1B 3X9, Canada.

出版信息

Microorganisms. 2020 Apr 14;8(4):562. doi: 10.3390/microorganisms8040562.

Abstract

Bacteria employ regulatory networks to detect environmental signals and respond appropriately, often by adjusting gene expression. Some regulatory networks influence many genes, and many genes are affected by multiple regulatory networks. Here, we investigate the extent to which regulatory systems controlling aerobic-anaerobic energetics overlap with the CtrA phosphorelay, an important system that controls a variety of behavioral processes, in two metabolically versatile alphaproteobacteria, and . We analyzed ten available transcriptomic datasets from relevant regulator deletion strains and environmental changes. We found that in , the CtrA phosphorelay represses three of the four aerobic-anaerobic Crp/Fnr superfamily regulator-encoding genes (, , and especially ). At the same time, all four Crp/Fnr regulators repress all three phosphorelay genes. Loss of or resulted in activation of the entire examined CtrA regulon, regardless of oxygen tension. In FnrL, in silico and ChIP-seq data also suggested regulation of the CtrA regulon, but it was only with loss of the redox regulator RegA where an actual transcriptional effect on the CtrA regulon was observed. For the first time, we show that there are complex interactions between redox regulators and the CtrA phosphorelays in these bacteria and we present several models for how these interactions might occur.

摘要

细菌利用调控网络来检测环境信号并做出适当反应,通常是通过调节基因表达。一些调控网络会影响许多基因,并且许多基因会受到多个调控网络的影响。在这里,我们研究了在两种代谢功能多样的α-变形菌中,控制有氧-无氧能量代谢的调控系统与CtrA磷酸化信号转导途径(一种控制多种行为过程的重要系统)重叠的程度。我们分析了来自相关调控因子缺失菌株和环境变化的十个可用转录组数据集。我们发现,在[具体菌名1]中,CtrA磷酸化信号转导途径抑制四个有氧-无氧Crp/Fnr超家族调控因子编码基因中的三个([基因名1]、[基因名2],尤其是[基因名3])。同时,所有四个Crp/Fnr调控因子都抑制所有三个磷酸化信号转导途径基因。[基因名1]或[基因名2]的缺失导致整个检测的CtrA调控子被激活,无论氧张力如何。在[具体菌名2]中,FnrL的计算机模拟和ChIP-seq数据也表明对CtrA调控子有调控作用,但只有在氧化还原调控因子RegA缺失时,才观察到对CtrA调控子的实际转录效应。我们首次表明,在这些细菌中,氧化还原调控因子与CtrA磷酸化信号转导途径之间存在复杂的相互作用,并且我们提出了几种这些相互作用可能发生的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80c2/7232146/56ed7215138e/microorganisms-08-00562-g001.jpg

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