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首页> 外文期刊>Journal of bacteriology >Polar Localization of the CckA Histidine Kinase and Cell Cycle Periodicity of the Essential Master Regulator CtrA in Caulobacter crescentus
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Polar Localization of the CckA Histidine Kinase and Cell Cycle Periodicity of the Essential Master Regulator CtrA in Caulobacter crescentus

机译:CckA组氨酸激酶的极性本地化和Caulobacter crescentus中的基本主调节器CtrA的细胞周期周期性。

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The phosphorylated form of the response regulator CtrA represses DNA replication initiation and regulates the transcription of about 100 cell cycle-regulated genes in Caulobacter crescentus. CtrA activity fluctuates during the cell cycle, and its periodicity is a key element of the engine that drives cell cycle progression. The histidine kinase CckA controls the phosphorylation not only of CtrA but also of CpdR, whose unphosphorylated form promotes CtrA proteolysis. Thus, CckA has a central role in establishing the cell cycle periodicity of CtrA activity by controlling both its phosphorylation and stability. Evidence suggests that the polar localization of CckA during the cell cycle plays a role in CckA function. However, the exact pattern of CckA localization remains controversial. Here, we describe a thorough, quantitative analysis of the spatiotemporal distribution of a functional and chromosomally produced CckA-monomeric green fluorescent protein fusion that affects current models of cell cycle regulation. We also identify two cis-acting regions in CckA that are important for its proper localization and function. The disruption of a PAS-like motif in the sensor domain affects the stability of CckA accumulation at the poles. This is accompanied by a partial loss in CckA function. Shortening an extended linker between β-sheets within the CckA catalysis-assisting ATP-binding domain has a more severe effect on CckA polar localization and function. This mutant strain exhibits a dramatic cell-to-cell variability in CpdR levels and CtrA cell cycle periodicity, suggesting that the cell cycle-coordinated polar localization of CckA may be important for the robustness of signal transduction and cell cycle progression.
机译:应答调节剂CtrA的磷酸化形式抑制DNA复制的起始,并调节 Caulobacter crescentus 中约100个细胞周期调控基因的转录。 CtrA活性在细胞周期中波动,其周期性是驱动细胞周期进程的引擎的关键因素。组氨酸激酶CckA不仅控制CtrA的磷酸化,而且还控制CpdR的磷酸化,其未磷酸化形式促进CtrA的蛋白水解。因此,CckA通过控制CtrA的磷酸化和稳定性,在建立CtrA活性的细胞周期周期性中起着中心作用。有证据表明,细胞周期中CckA的极性定位在CckA功能中起作用。但是,CckA定位的确切模式仍存在争议。在这里,我们描述了功能和染色体产生的CckA单体绿色荧光蛋白融合物影响当前细胞周期调控模型的时空分布的彻底,定量分析。我们还确定了CckA中的两个 cis 作用区域,这些区域对其正确的定位和功能很重要。传感器结构域中PAS样基序的破坏会影响CckA在两极积累的稳定性。这伴随着CckA功能的部分丧失。缩短CckA催化辅助ATP结合域内β-折叠之间的延伸连接子对CckA极性定位和功能有更严重的影响。该突变株在CpdR水平和CtrA细胞周期周期性方面表现出显着的细胞间变异性,表明CckA的细胞周期协调极性定位可能对信号转导和细胞周期进程的稳健性很重要。

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