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A phospho-signaling pathway controls the localization and activity of a protease complex critical for bacterial cell cycle progression

机译:磷酸信号通路控制对细菌细胞周期进程至关重要的蛋白酶复合物的定位和活性

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Temporally and spatially controlled master regulators drive the Caulobacter cell cycle by regulating the expression of > 200 genes. Rapid clearance of the master regulator, CtrA, by the CIpXP protease is a critical event that enables the initiation of chromosome replication at specific times in the cell cycle. We show here that a previously unidentified single domain-response regulator, CpdR, when in the unphosphorylated state, binds to CIpXP and, thereby, causes its localization to the cell pole. We further show that CIpXP localization is required for CtrA proteolysis. When CpdR is phosphorylated, CIpXP is delocalized, and CtrA is not degraded. Both CtrA and CpdR are phosphorylated via the same CckA histidine kinase phospho-signaling pathway, providing a reinforcing mechanism that simultaneously activates CtrA and prevents its degradation by delocalizing the CpdR/ClpXP complex. In swarmer cells, CpdR is in the phosphorylated state, thus preventing CIpXP localization and CtrA degradation. As swarmer cells differentiate into stalked cells (Gi/S transition), unphosphorylated CpdR accumulates and is localized to the stalked cell pole, where it enables CIpXP localization and CtrA proteolysis, allowing the initiation of DNA replication. Dynamic protease localization mediated by a phosphosignaling pathway is a novel mechanism to integrate spatial and temporal control of bacterial cell cycle progression.
机译:临时和空间控制的主调节剂通过调节> 200个基因的表达来驱动杆状细菌细胞周期。 CIpXP蛋白酶快速清除主调节剂CtrA是一个关键事件,可在细胞周期的特定时间启动染色体复制。我们在这里显示,以前处于未知状态的单域响应调节剂CpdR,处于未磷酸化状态时,与CIpXP结合,从而导致其定位于细胞极。我们进一步表明,CtrA蛋白水解需要CIpXP本地化。当CpdR被磷酸化时,CIpXP被去域化,并且CtrA不会降解。 CtrA和CpdR均通过相同的CckA组氨酸激酶磷酸信号通路磷酸化,提供了一种增强机制,可同时激活CtrA并通过使CpdR / ClpXP复合物离域来防止其降解。在成群的细胞中,CpdR处于磷酸化状态,从而防止了CIpXP定位和CtrA降解。随着成群的细胞分化成茎细胞(Gi / S过渡),未磷酸化的CpdR积累并定位于茎细胞极,从而使CIpXP定位和CtrA蛋白水解,从而启动DNA复制。由磷酸信号途径介导的动态蛋白酶定位是整合细菌细胞周期进程的时空控制的新型机制。

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