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An Essential Role for (p)ppGpp in the Integration of Stress Tolerance Peptide Signaling and Competence Development in Streptococcus mutans

机译:(p)ppGpp在变形链球菌的耐压力肽信号传导和能力发展的整合中的重要作用

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摘要

The microbes that inhabit the human oral cavity are subjected to constant fluctuations in their environment. To overcome these challenges and gain a competitive advantage, oral streptococci employ numerous adaptive strategies, many of which appear to be intertwined with the development of genetic competence. Here, we demonstrate that the regulatory circuits that control development of competence in Streptococcus mutans, a primary etiological agent of human dental caries, are integrated with key stress tolerance pathways by the molecular alarmone (p)ppGpp. We first observed that the growth of a strain that does not produce (p)ppGpp (ΔrelAPQ, (p)ppGpp0) is not sensitive to growth inhibition by comX inducing peptide (XIP), unlike the wild-type strain UA159, even though XIP-dependent activation of the alternative sigma factor comX by the ComRS pathway is not impaired in the (p)ppGpp0 strain. Overexpression of a (p)ppGpp synthase gene (relP) in the (p)ppGpp0 mutant restored growth inhibition by XIP. We also demonstrate that exposure to micromolar concentrations of XIP elicited changes in (p)ppGpp accumulation in UA159. Loss of the RelA/SpoT homolog (RSH) enzyme, RelA, lead to higher basal levels of (p)ppGpp accumulation, but to decreased sensitivity to XIP and to decreases in comR promoter activity and ComX protein levels. By introducing single amino acid substitutions into the RelA enzyme, the hydrolase activity of the enzyme was shown to be crucial for full com gene induction and transformation by XIP. Finally, loss of relA resulted in phenotypic changes to ΔrcrR mutants, highlighted by restoration of transformation and ComX protein production in the otherwise non-transformable ΔrcrR-NP mutant. Thus, RelA activity and its influence on (p)ppGpp pools appears to modulate competence signaling and development through RcrRPQ and the peptide effectors encoded within rcrQ. Collectively, this study provides new insights into the molecular mechanisms that integrate intercellular communication with the physiological status of the cells and the regulation of key virulence-related phenotypes in S. mutans.
机译:居住在人类口腔中的微生物的环境不断变化。为了克服这些挑战并获得竞争优势,口服链球菌采用了许多适应性策略,其中许多似乎与遗传能力的发展息息相关。在这里,我们证明了控制变形链球菌(人类龋齿的主要病因)中的能力发展的调控电路,通过分子警报(p)ppGpp与关键的压力耐受途径整合在一起。我们首先观察到不产生(p)ppGpp(ΔrelAPQ,(p)ppGpp 0 )的菌株的生长对野生型comX诱导肽(XIP)的生长抑制不敏感,这与野生(p)ppGpp 0 菌株中,即使通过ComRS途径XIP依赖性激活替代sigma因子comX,也不会破坏UA159型菌株。 (p)ppGpp 0 突变体中(p)ppGpp合酶基因(relP)的过表达恢复了XIP对生长的抑制作用。我们还证明了暴露于XIP的微摩尔浓度会引起UA159中(p)ppGpp积累的变化。 RelA / SpoT同源(RSH)酶RelA的丧失导致(p)ppGpp积累的基础水平升高,但对XIP的敏感性降低,并且comR启动子活性和ComX蛋白水平降低。通过将单个氨基酸取代引入RelA酶,该酶的水解酶活性被证明对于XIP完全com基因诱导和转化至关重要。最后,relA的缺失导致ΔrcrR突变体的表型改变,突出显示了在其他情况下不可转化的ΔrcrR-NP突变体中转化和ComX蛋白产生的恢复。因此,RelA活性及其对(p)ppGpp库的影响似乎通过RcrRPQ和rcrQ中编码的肽效应子来调节能力信号传导和发育。总的来说,这项研究为整合细胞间通讯与细胞的生理状态以及变形链球菌关键毒力相关表型的调控的分子机制提供了新见解。

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