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A Novel Pheromone Quorum-Sensing System Controls the Development of Natural Competence in Streptococcus thermophilus and Streptococcus salivarius

机译:新型信息素群体感应系统控制嗜热链球菌和唾液链球菌自然能力的发展

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摘要

In streptococcal species, the key step of competence development is the transcriptional induction of comX, which encodes the alternative sigma factor σX, which positively regulates genes necessary for DNA transformation. In Streptococcus species belonging to the mitis and mutans groups, induction of comX relies on the activation of a three-component system consisting of a secreted pheromone, a histidine kinase, and a response regulator. In Streptococcus thermophilus, a species belonging to the salivarius group, the oligopeptide transporter Ami is essential for comX expression under competence-inducing conditions. This suggests a different regulation pathway of competence based on the production and reimportation of a signal peptide. The objective of our work was to identify the main actors involved in the early steps of comX induction in S. thermophilus LMD-9. Using a transcriptomic approach, four highly induced early competence operons were identified. Among them, we found a Rgg-like regulator (Ster_0316) associated with a nonannotated gene encoding a 24-amino-acid hydrophobic peptide (Shp0316). Through genetic deletions, we showed that these two genes are essential for comX induction. Moreover, addition to the medium of synthetic peptides derived from the C-terminal part of Shp0316 restored comX induction and transformation of a Shp0316-deficient strain. These peptides also induced competence in S. thermophilus and Streptococcus salivarius strains that are poorly transformable or not transformable. Altogether, our results show that Ster_0316 and Shp0316, renamed ComRS, are the two members of a novel quorum-sensing system responsible for comX induction in species from the salivarius group, which differs from the classical phosphorelay three-component system identified previously in streptococci.
机译:在链球菌种中,能力发展的关键步骤是comX的转录诱导,它编码替代sigma因子σ X ,它正调控DNA转化所需的基因。在属于炎症和变形族的链球菌中,comX的诱导依赖于由分泌的信息素,组氨酸激酶和响应调节剂组成的三组分系统的激活。在嗜热链球菌中,属于唾液菌类的一个物种,寡肽转运蛋白Ami对于在能力诱导条件下comX表达至关重要。这表明基于信号肽的产生和再输入的能力的不同调节途径。我们工作的目的是确定嗜热链球菌LMD-9 comX诱导的早期步骤中涉及的主要参与者。使用转录组学方法,确定了四个高度诱导的早期能力操纵子。其中,我们发现了一个Rgg样调节子(Ster_0316),它与编码24个氨基酸的疏水肽(Shp0316)的非注释基因相关。通过遗传删除,我们表明这两个基因对于comX诱导至关重要。此外,向培养基中添加源自Shp0316 C末端部分的合成肽可恢复comX诱导和Shp0316缺陷型菌株的转化。这些肽还在可转化性差或不可转化性的嗜热链球菌和唾液链球菌菌株中诱导能力。总的来说,我们的结果表明,Ster_0316和Shp0316(更名为ComRS)是负责群体唾液类物种comX诱导的新型群体感应系统的两个成员,该系统不同于以前在链球菌中鉴定的经典磷泥三组分系统。

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