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Comprehensive Transcriptome Profiles of Streptococcus mutans UA159 Map Core Streptococcal Competence Genes

机译:变形链球菌UA159映射核心链球菌能力基因的完整转录组谱。

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In Streptococcus mutans , an oral colonizer associated with dental caries, development of competence for natural genetic transformation is triggered by either of two types of peptide pheromones, competence-stimulating peptides (CSPs) (18?amino acids [aa]) or SigX-inducing peptides (XIPs) (7?aa). Competence induced by CSP is a late response to the pheromone that requires the response regulator ComE and the XIP-encoding gene comS . XIP binds to ComR to allow expression of the alternative sigma factor SigX and the effector genes it controls. While these regulatory links are established, the precise set of effectors controlled by each regulator is poorly defined. To improve the definition of all three regulons, we used a high-resolution tiling array to map global changes in gene expression in the early and late phases of the CSP response. The early phase of the CSP response was limited to increased gene expression at four loci associated with bacteriocin production and immunity. In the late phase, upregulated regions expanded to a total of 29 loci, including comS and genes required for DNA uptake and recombination. The results indicate that the entire late response to CSP depends on the expression of comS and that the immediate transcriptional response to CSP, mediated by ComE, is restricted to just four bacteriocin-related loci. Comparison of the new data with published transcriptome data permitted the identification of all of the operons in each regulon: 4 for ComE, 2 for ComR, and 21 for SigX. Finally, a core set of 27 panstreptococcal competence genes was identified within the SigX regulon by comparison of transcriptome data from diverse streptococcal species. IMPORTANCE S.?mutans has the hard surfaces of the oral cavity as its natural habitat, where it depends on its ability to form biofilms in order to survive. The comprehensive identification of S.?mutans regulons activated in response to peptide pheromones provides an important basis for understanding how S.?mutans can transition from individual to social behavior. Our study placed 27 of the 29 transcripts activated during competence within three major regulons and revealed a core set of 27 panstreptococcal competence-activated genes within the SigX regulon.
机译:在与龋齿相关的口腔定居者变形链球菌中,天然的遗传转化能力的发展是由两种类型的肽信息素(CSPs)(18?氨基酸[aa])或SigX诱导的任何一种触发的。肽(XIP)(7?aa)。 CSP诱导的能力是对信息素的晚期反应,它需要反应调节剂ComE和XIP编码基因comS。 XIP与ComR结合,以表达替代的Sigma因子SigX及其控制的效应子基因。虽然建立了这些监管联系,但每个监管者控制的确切效应子集却定义不清。为了改善所有三个调控区的定义,我们使用了高分辨率的切片阵列来绘制CSP反应早期和晚期基因表达的总体变化。 CSP反应的早期仅限于与细菌素产生和免疫相关的四个基因座的基因表达增加。在后期,上调区域扩展到总共29个基因座,包括comS和DNA吸收和重组所需的基因。结果表明,对CSP的整个晚期反应取决于comS的表达,并且由ComE介导的对CSP的即时转录反应仅限于四个细菌素相关位点。通过将新数据与已发布的转录组数据进行比较,可以识别每个区域中的所有操纵子:ComE为4,ComR为2,SigX为21。最后,通过比较来自不同链球菌物种的转录组数据,在SigX regulon中鉴定出27个全链球菌能力基因的核心集。重要事项变形链球菌具有口腔的坚硬表面作为其自然栖息地,在此取决于其形成生物膜以生存的能力。响应肽信息素而激活的变形链球菌调节蛋白的全面鉴定,为理解变形链球菌如何从个人行为向社会行为转变提供了重要基础。我们的研究将在竞争过程中激活的29个转录本中的27个置于三个主要调控子中,并揭示了SigX调控子中27个全链球菌竞争性激活基因的核心集合。

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