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Genome-wide identification of genes directly regulated by the pleiotropic transcription factor Spx in Bacillus subtilis

机译:枯草芽孢杆菌中由多效转录因子Spx直接调控的基因的全基因组鉴定

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The transcriptional regulator Spx plays a key role in maintaining the redox homeostasis of Bacillus subtilis cells exposed to disulfide stress. Defects in Spx were previously shown to lead to differential expression of numerous genes but direct and indirect regulatory effects could not be distinguished. Here we identified 283 discrete chromosomal sites potentially bound by the Spx–RNA polymerase (Spx–RNAP) complex using chromatin immunoprecipitation of Spx. Three quarters of these sites were located near Sigma(A)-dependent promoters, and upon diamide treatment, the fraction of the Spx–RNAP complex increased in parallel with the number and occupancy of DNA sites. Correlation of Spx–RNAP-binding sites with gene differential expression in wild-type and Δspx strains exposed or not to diamide revealed that 144 transcription units comprising 275 genes were potentially under direct Spx regulation. Spx-controlled promoters exhibited an extended 35 box in which nucleotide composition at the 43/44 positions strongly correlated with observed activation. In vitro transcription confirmed activation by oxidized Spx of seven newly identified promoters, of which one was also activated by reduced Spx. Our study globally characterized the Spx regulatory network, revealing its role in the basal expression of some genes and its complex interplay with other stress responses.
机译:转录调节因子Spx在维持暴露于二硫键胁迫下的枯草芽孢杆菌细胞的氧化还原稳态中起着关键作用。先前已证明Spx中的缺陷会导致许多基因的差异表达,但无法区分直接和间接的调节作用。在这里,我们使用Spx的染色质免疫沉淀法鉴定了283个可能由Spx-RNA聚合酶(Spx-RNAP)复合体结合的离散染色体位点。这些位点的四分之三位于依赖Sigma(A)的启动子附近,二酰胺处理后,Spx-RNAP复合物的比例随DNA位点的数量和占有率的增加而增加。 Spx–RNAP结合位点与野生型和未暴露于二酰胺的Δspx菌株中基因差异表达的相关性表明,包含275个基因的144个转录单位可能受到直接Spx调控。 Spx控制的启动子展示了一个扩展的35框,其中43/44位的核苷酸组成与观察到的激活密切相关。体外转录证实了七个新鉴定的启动子被氧化的Spx激活,其中一个也被还原的Spx激活。我们的研究在全球范围内表征了Spx调控网络,揭示了其在某些基因的基础表达中的作用及其与其他应激反应的复杂相互作用。

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