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CdrS Is a Global Transcriptional Regulator Influencing Cell Division in Haloferax volcanii

机译:CDR是一个全局转录调节器,影响<命名内容内容型=“Genus-lemies”> Haloferax Volcanii 中的全局转录调节器

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ABSTRACT Transcriptional regulators that integrate cellular and environmental signals to control cell division are well known in bacteria and eukaryotes, but their existence is poorly understood in archaea. We identified a conserved gene ( cdrS ) that encodes a small protein and is highly transcribed in the model archaeon Haloferax volcanii . The cdrS gene could not be deleted, but CRISPR interference (CRISPRi)-mediated repression of the cdrS gene caused slow growth and cell division defects and changed the expression of multiple genes and their products associated with cell division, protein degradation, and metabolism. Consistent with this complex regulatory network, overexpression of cdrS inhibited cell division, whereas overexpression of the operon encoding both CdrS and a tubulin-like cell division protein (FtsZ2) stimulated division. Chromatin immunoprecipitation-DNA sequencing (ChIP-Seq) identified 18 DNA-binding sites of the CdrS protein, including one upstream of the promoter for a cell division gene, ftsZ1 , and another upstream of the essential gene dacZ , encoding diadenylate cyclase involved in c-di-AMP signaling, which is implicated in the regulation of cell division. These findings suggest that CdrS is a transcription factor that plays a central role in a regulatory network coordinating metabolism and cell division.
机译:摘要将细胞和环境信号集成到控制细胞分裂的转录调节因子在细菌和真核生物中是众所周知的,但在古亚亚中,它们的存在很差。我们鉴定了编码小蛋白质的保守基因(CDR),并且在模型中高度转录在archaeon haloferax volcanii。 CDRS基因无法删除,但CREP的干扰(CRISPRI)介导的CDR基因的抑制导致缓慢的生长和细胞分裂缺陷,并改变了多种基因的表达及其与细胞分裂,蛋白质降解和代谢相关的产品的表达。与这种复杂的调节网络一致,CDR的过度表达抑制细胞分裂,而编码CDR和管蛋白状细胞分裂蛋白(FTSZ2)刺激划分的操纵子的过度表达。染色质免疫沉淀-DNA测序(CHIP-SEQ)鉴定了CDRS蛋白的18个DNA结合位点,包括用于细胞分裂基因,FTSZ1和必要基因DACZ的另一个上游的启动子上游的一个上游,编码C的酰胺基环酶c -di-amp信令,其涉及细胞分裂的调节。这些发现表明,CDR是在监管网络协调新陈代谢和细胞划分中发挥着核心作用的转录因素。

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