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A bacterial control circuit integrates polar localization and proteolysis of key regulatory proteins with a phospho-signaling cascade

机译:细菌控制电路将关键调节蛋白的极性定位和蛋白水解与磷酸信号级联相结合

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摘要

Dynamic protein localization is an integral component of the regulatory circuit that drives the Caulobacter cell cycle. The ClpXP protease is localized to the Caulobacter cell pole, where it catalyzes the degradation of the CtrA master regulator at specific times in the cell cycle. Clearance of active CtrA at the G1/S transition allows the initiation of DNA replication and cell-cycle progression. The polar localization of ClpXP is dependent on the polar positioning of the CpdR single-domain response regulator. Only the unphosphorylated form of CpdR localizes and activates ClpXP. We demonstrate that another single domain response regulator, DivK, promotes the polar accumulation of unphosphorylated CpdR and that CpdR is subsequently degraded at the cell pole by the localized ClpXP protease. Thus, CpdR function is regulated by a feedback loop that incorporates its differential phosphorylation, the transient polar localization and activity of the ClpXP protease, and the clearance of the CpdR by polar ClpXP that, in turn, releases ClpXP from the pole relieving the degradation of CtrA. CtrA∼P then accumulates and activates the transcription of cpdR, completing the regulatory loop, establishing an integrated network that controls a robust cell-cycle transition.
机译:动态蛋白质定位是驱动杆状细菌细胞周期的调节回路的组成部分。 ClpXP蛋白酶位于Caulobacter细胞极,在细胞周期的特定时间催化CtrA主调节剂的降解。在G1 / S过渡时清除活性CtrA可以启动DNA复制和细胞周期进程。 ClpXP的极性定位取决于CpdR单域响应调节器的极性位置。只有CpdR的未磷酸化形式才能定位并激活ClpXP。我们证明,另一个单域响应调节剂DivK,促进未磷酸化的CpdR的极性积累,并且该CpdR随后在细胞极被本地化的ClpXP蛋白酶降解。因此,CpdR的功能受到反馈回路的调节,该回路结合了其差异化的磷酸化作用,ClpXP蛋白酶的瞬时极性定位和活性以及极性ClpXP对CpdR的清除作用,进而从极点释放ClpXP从而减轻了CpXP的降解点阅率。然后,CtrA〜P积累并激活cpdR的转录,从而完成调节环,从而建立了一个控制强大的细胞周期过渡的整合网络。

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