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Functional characterization of WalRK: A two-component signal transduction system from Bacillus anthracis

机译:WalRK的功能表征:炭疽芽孢杆菌的两组分信号转导系统

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Two-component signal transduction systems (TCS), consisting of a sensor histidine protein kinase and its cognate response regulator, are an important mode of environmental sensing in bacteria. Additionally, they have been found to regulate virulence determinants in several pathogens. Bacillus anthracis, the causative agent of anthrax and a bioterrorism agent, harbours 41 pairs of TCS. However, their role in its pathogenicity has remained largely unexplored. Here, we show that WalRK of B. anthracis forms a functional TCS which exhibits some species-specific functions. Biochemical studies showed that domain variants of WalK, the histidine kinase, exhibit classical properties of autophosphorylation and phosphotransfer to its cognate response regulator WalR. Interestingly, these domain variants also show phosphatase activity towards phosphorylated WalR, thereby making WalK a bifunctional histidine kinase/phosphatase. An in silico regulon determination approach, using a consensus binding sequence from Bacillus subtilis, provided a list of 30 genes that could form a putative WalR regulon in B. anthracis. Further, electrophoretic mobility shift assay was used to show direct binding of purified WalR to the upstream regions of three putative regulon candidates, an S-layer protein EA1, a cell division ABC transporter FtsE and a sporulation histidine kinase KinB3. Our work lends insight into the species-specific functions and mode of action of B. anthracis WalRK.
机译:由传感器组氨酸蛋白激酶及其同源响应调节剂组成的两组分信号转导系统(TCS)是细菌进行环境传感的重要模式。另外,已经发现它们调节几种病原体中的毒力决定因素。炭疽杆菌是炭疽的病原体和生物恐怖分子,内含41对TCS。然而,它们在其致病性中的作用尚未得到充分探索。在这里,我们显示炭疽芽孢杆菌的WalRK形成功能性TCS,具有某些物种特定的功能。生化研究表明,组氨酸激酶WalK的结构域变体表现出经典的自磷酸化和向其同源应答调节因子WalR磷酸转移的特性。有趣的是,这些结构域变体还显示出针对磷酸化的WalR的磷酸酶活性,从而使WalK成为双功能组氨酸激酶/磷酸酶。使用枯草芽孢杆菌的共有结合序列进行的计算机基因组确定方法提供了可能在炭疽芽胞杆菌中形成推定的WalR基因组的30个基因的列表。此外,电泳迁移率变动分析用于显示纯化的WalR与三个假定的调节子候选物,S层蛋白EA1,细胞分裂ABC转运蛋白FtsE和孢子形成组氨酸激酶KinB3的上游区域直接结合。我们的工作有助于深入了解炭疽芽孢杆菌WalRK的物种特定功能和作用方式。

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