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首页> 外文期刊>Molecular Microbiology >Competence inhibition by the XrpA peptide encoded within the comX comX gene of Streptococcus mutans Streptococcus mutans
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Competence inhibition by the XrpA peptide encoded within the comX comX gene of Streptococcus mutans Streptococcus mutans

机译:XRPA肽在链球菌(Streptococccus Mutans)的Comx Comx基因内编码的XRPA肽的能力抑制

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Summary Streptococcus mutans displays complex regulation of natural genetic competence. Competence development in S. mutans is controlled by a peptide derived from ComS (XIP); which along with the cytosolic regulator ComR controls the expression of the alternative sigma factor comX , the master regulator of competence development. Recently, a gene embedded within the coding region of comX was discovered and designated xrpA (com X r egulatory p eptide A ). XrpA was found to be an antagonist of ComX, but the mechanism was not established. In this study, we reveal through both genomic and proteomic techniques that XrpA is the first described negative regulator of ComRS systems in streptococci. Transcriptomic and promoter activity assays in the Δ xrpA strain revealed an up‐regulation of genes controlled by both the ComR‐ and ComX‐regulons. An in vivo protein crosslinking and in vitro fluorescent polarization assays confirmed that the N‐terminal region of XrpA were found to be sufficient in inhibiting ComR‐XIP complex binding to ECom‐box located within the comX promoter. This inhibitory activity was sufficient for decreases in P comX activity, transformability and ComX accumulation. XrpA serving as a modulator of ComRS activity ultimately results in changes to subpopulation behaviors and cell fate during competence activation.
机译:摘要链球菌变形性显示复杂的自然遗传竞争力。 S. mutans的能力发展由衍生自COMS(XIP)的肽控制;与细胞溶质调节器COMR一起控制替代SIGMA因子COMX的表达,竞争力的主调节器。最近,发现并指定嵌入COMX编码区域内的基因并指定XRPA(COM X R Egulatory P ePTide A)。发现XRPA是COMX的拮抗剂,但该机制尚未建立。在这项研究中,我们通过基因组和蛋白质组学技术揭示XRPA是Streptococci中第一个描述的Comrs系统负调节剂。 δXRPA菌株中的转录组和启动子活性测定揭示了由COMR和COMX-COMMON控制的基因的上调。体内蛋白质交联和体外荧光偏振测定证实,发现XRPA的N-末端区域是足以抑制位于COMX启动子内的ECOM盒的COMR-XIP复合物。该抑制活性足以降低P Comx活性,变性性和Comx积累。作为COMRS活动的调制器的XRPA最终导致竞争力激活期间的亚群行为和细胞命运的变化。

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