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Immediate and heterogeneous response of the LiaFSR two-component system of Bacillus subtilis to the peptide antibiotic bacitracin.

机译:LiaFsR枯草芽孢杆菌双组分系统对肽抗生素杆菌肽的即时和异质响应。

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摘要

Two-component signal transduction systems are one means of bacteria to respond to external stimuli. The LiaFSR two-component system of Bacillus subtilis consists of a regular two-component system LiaRS comprising the core Histidine Kinase (HK) LiaS and the Response Regulator (RR) LiaR and additionally the accessory protein LiaF, which acts as a negative regulator of LiaRS-dependent signal transduction. The complete LiaFSR system was shown to respond to various peptide antibiotics interfering with cell wall biosynthesis, including bacitracin.Here we study the response of the LiaFSR system to various concentrations of the peptide antibiotic bacitracin. Using quantitative fluorescence microscopy, we performed a whole population study analyzed on the single cell level. We investigated switching from the non-induced 'OFF' state into the bacitracin-induced 'ON' state by monitoring gene expression of a fluorescent reporter from the RR-regulated liaI promoter. We found that switching into the 'ON' state occurred within less than 20 min in a well-defined switching window, independent of the bacitracin concentration. The switching rate and the basal expression rate decreased at low bacitracin concentrations, establishing clear heterogeneity 60 min after bacitracin induction. Finally, we performed time-lapse microscopy of single cells confirming the quantitative response as obtained in the whole population analysis for high bacitracin concentrations.The LiaFSR system exhibits an immediate, heterogeneous and graded response to the inducer bacitracin in the exponential growth phase.
机译:两成分信号转导系统是细菌对外部刺激作出反应的一种手段。枯草芽孢杆菌的LiaFSR两组分系统由常规的两组分系统LiaRS组成,其中包括核心组氨酸激酶(HK)LiaS和响应调节剂(RR)LiaR,以及辅助蛋白LiaF,后者作为LiaRS的负调节剂依赖的信号转导。完整的LiaFSR系统显示出对干扰细胞壁生物合成的各种肽抗生素(包括杆菌肽)的应答。在这里,我们研究了LiaFSR系统对各种浓度的肽抗生素杆菌肽的应答。使用定量荧光显微镜,我们在单细胞水平上进行了总体研究。我们通过监测来自RR调控的liaI启动子的荧光报告基因的表达,研究了从非诱导的“ OFF”状态切换到杆菌肽诱导的“ ON”状态。我们发现,在一个明确定义的切换窗口中,不到20分钟即可切换到“ ON”状态,而与杆菌肽浓度无关。在低杆菌肽浓度下,转换速率和基础表达速率降低,在杆菌肽诱导后60分钟建立明显的异质性。最后,我们对单细胞进行了延时显微镜检查,以确认在整个杆菌种群浓度分析中获得的定量响应.LiaFSR系统在指数生长期对诱导杆菌肽表现出立即,异质和分级的响应。

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