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Decoding genome-wide GadEWX-transcriptional regulatory networks reveals multifaceted cellular responses to acid stress in Escherichia coli

机译:解码全基因组的GadEWX转录调控网络揭示大肠杆菌对酸胁迫的多方面细胞反应

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The regulators GadE, GadW and GadX (which we refer to as GadEWX) play a critical role in the transcriptional regulation of the glutamate-dependent acid resistance (GDAR) system in Escherichia coli K-12 MG1655. However, the genome-wide regulatory role of GadEWX is still unknown. Here we comprehensively reconstruct the genome-wide GadEWX transcriptional regulatory network and RpoS involvement in E. coli K-12 MG1655 under acidic stress. Integrative data analysis reveals that GadEWX regulons consist of 45 genes in 31 transcription units and 28 of these genes were associated with RpoS-binding sites. We demonstrate that GadEWX directly and coherently regulate several proton-generating/consuming enzymes with pairs of negative-feedback loops for pH homeostasis. In addition, GadEWX regulate genes with assorted functions, including molecular chaperones, acid resistance, stress response and other regulatory activities. These results show how GadEWX simultaneously coordinate many cellular processes to produce the overall response of E. coli to acid stress.
机译:调节剂GadE,GadW和GadX(我们称为GadEWX)在大肠杆菌K-12 MG1655中谷氨酸依赖性酸抗性(GDAR)系统的转录调节中起关键作用。但是,GadEWX在全基因组中的调控作用仍然未知。在这里,我们全面重建整个基因组范围内的GadEWX转录调控网络和RpoS在酸性胁迫下对大肠杆菌K-12 MG1655的参与。综合数据分析显示,GadEWX调控子由31个转录单位中的45个基因组成,其中28个基因与RpoS结合位点相关。我们证明,GadEWX直接和连贯地调节几种质子产生/消耗酶与成对的pH稳态负反馈回路。此外,GadEWX调节具有多种功能的基因,包括分子伴侣,耐酸性,应激反应和其他调节活性。这些结果表明,GadEWX如何同时协调许多细胞过程,以产生大肠杆菌对酸胁迫的整体反应。

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