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首页> 外文期刊>MicrobiologyOpen >Genome‐wide mapping of TnrA‐binding sites provides new insights into the TnrA regulon in Bacillus subtilis
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Genome‐wide mapping of TnrA‐binding sites provides new insights into the TnrA regulon in Bacillus subtilis

机译:TnrA结合位点的全基因组定位为枯草芽孢杆菌中的TnrA调节子提供了新见解

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AbstractUnder nitrogen limitation conditions, Bacillus subtilis induces a sophisticated network of adaptation responses. More precisely, the B. subtilis TnrA regulator represses or activates directly or indirectly the expression of a hundred genes in response to nitrogen availability. The global TnrA regulon have already been identified among which some directly TnrA-regulated genes have been characterized. However, a genome-wide mapping of in vivo TnrA-binding sites was still needed to clearly define the set of genes directly regulated by TnrA. Using chromatin immunoprecipitation coupled with hybridization to DNA tiling arrays (ChIP-on-chip), we now provide in vivo evidence that TnrA reproducibly binds to 42 regions on the chromosome. Further analysis with real-time in vivo transcriptional profiling, combined with results from previous reports, allowed us to define the TnrA primary regulon. We identified 35 promoter regions fulfilling three criteria necessary to be part of this primary regulon: (i) TnrA binding in ChIP-on-chip experiments and/or in previous in vitro studies; (ii) the presence of a TnrA box; (iii) TnrA-dependent expression regulation. In addition, the TnrA primary regulon delimitation allowed us to improve the TnrA box consensus. Finally, our results reveal new interconnections between the nitrogen regulatory network and other cellular processes.
机译:摘要在氮限制条件下,枯草芽孢杆菌诱导了复杂的适应反应网络。更确切地说,枯草芽孢杆菌TnrA调节剂响应氮的有效利用,直接或间接抑制或激活一百个基因的表达。已经鉴定出全球性的TnrA调节子,其中已经表征了一些直接的TnrA调节基因。然而,仍然需要体内TnrA结合位点的全基因组图谱来明确定义直接受TnrA调控的基因集。使用染色质免疫沉淀并结合到DNA切片阵列(芯片上芯片),我们现在提供体内证据证明TnrA可再现地结合到染色体上的42个区域。借助实时体内转录谱分析进行的进一步分析,再结合先前报告的结果,使我们能够定义TnrA原发性调节子。我们确定了35个启动子区域,这些启动子区域满足了作为该主要调控子的一部分所必需的三个条件:(i)在芯片上芯片实验和/或先前的体外研究中TnrA结合; (ii)TnrA盒子的存在; (iii)TnrA依赖性表达调控。此外,TnrA主区域的定界使我们能够改善TnrA框的共识。最后,我们的结果揭示了氮调节网络与其他细胞过程之间的新互连。

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