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首页> 外文期刊>Frontiers in Microbiology >Modeling of the ComRS Signaling Pathway Reveals the Limiting Factors Controlling Competence in Streptococcus thermophilus
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Modeling of the ComRS Signaling Pathway Reveals the Limiting Factors Controlling Competence in Streptococcus thermophilus

机译:ComRS信号通路的建模揭示了控制嗜热链球菌能力的限制因素。

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In streptococci, entry in competence is dictated by ComX abundance. In Streptococcus thermophilus , production of ComX is transient and tightly regulated during growth: it is positively regulated by the cell-cell communication system ComRS during the activation phase and negatively regulated during the shut-off phase by unidentified late competence gene(s). Interestingly, most S. thermophilus strains are not or weakly transformable in permissive growth conditions (i.e., chemically defined medium, CDM), suggesting that some players of the ComRS regulatory pathway are limiting. Here, we combined mathematical modeling and experimental approaches to identify the components of the ComRS system which are critical for both dynamics and amplitude of ComX production in S. thermophilus . We built a deterministic, population-scaled model of the time-course regulation of specific ComX production in CDM growth conditions. Strains LMD-9 and LMG18311 were respectively selected as representative of highly and weakly transformable strains. Results from in silico simulations and in vivo luciferase activities show that ComR concentration is the main limiting factor for the level of comX expression and controls the kinetics of spontaneous competence induction in strain LMD-9. In addition, the model predicts that the poor transformability of strain LMG18311 results from a 10-fold lower comR expression level compared to strain LMD-9. In agreement, comR overexpression in both strains was shown to induce higher competence levels with deregulated kinetics patterns during growth. In conclusion, we propose that the level of ComR production is one important factor that could explain competence heterogeneity among S. thermophilus strains.
机译:在链球菌中,能力的进入由ComX的丰度决定。在嗜热链球菌中,ComX的产生是短暂的,并且在生长过程中受到严格调节:在激活阶段,细胞-细胞通讯系统ComRS对其产生正向调节作用,而在关闭阶段,ComX的产生受到未知的晚期能力基因的负向调节。有趣的是,大多数嗜热链球菌菌株在允许的生长条件下(即化学成分确定的培养基CDM)不能或很难转化,这表明ComRS调控途径的某些参与者是限制性的。在这里,我们结合了数学建模和实验方法来确定ComRS系统的组件,这些组件对于嗜热链球菌ComX生产的动力学和幅度均至关重要。我们建立了CDM生长条件下特定ComX生产的时程调节的确定性,人口规模模型。分别选择菌株LMD-9和LMG18311作为高和弱转化菌株的代表。计算机模拟和体内荧光素酶活性的结果表明,ComR浓度是comX表达水平的主要限制因素,并控制LMD-9菌株自发能力诱导的动力学。此外,该模型预测,与LMD-9菌株相比,LMG18311菌株的可转化性差是由于comR表达水平降低了10倍。一致的是,两种菌株中的comR过表达均显示出较高的能力水平,且在生长过程中动力学模式失控。总之,我们认为ComR生产水平是可以解释嗜热链球菌菌株之间能力异质性的重要因素之一。

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