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PNAS Plus: Integration of cell cycle signals by multi-PAS domain kinases

机译:PNAS Plus:通过多PAS域激酶整合细胞周期信号

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摘要

Spatial control of intracellular signaling relies on signaling proteins sensing their subcellular environment. In many cases, a large number of upstream signals are funneled to a master regulator of cellular behavior, but it remains unclear how individual proteins can rapidly integrate a complex array of signals within the appropriate spatial niche within the cell. As a model for how subcellular spatial information can control signaling activity, we have reconstituted the cell pole-specific control of the master regulator kinase/phosphatase CckA from the asymmetrically dividing bacterium Caulobacter crescentus. CckA is active as a kinase only when it accumulates within a microdomain at the new cell pole, where it colocalizes with the pseudokinase DivL. Both proteins contain multiple PAS domains, a multifunctional class of sensory domains present across the kingdoms of life. Here, we show that CckA uses its PAS domains to integrate information from DivL and its own oligomerization state to control the balance of its kinase and phosphatase activities. We reconstituted the DivL–CckA complex on liposomes in vitro and found that DivL directly controls the CckA kinase/phosphatase switch, and that stimulation of either CckA catalytic activity depends on the second of its two PAS domains. We further show that CckA oligomerizes through a multidomain interaction that is critical for stimulation of kinase activity by DivL, while DivL stimulation of CckA phosphatase activity is independent of CckA homooligomerization. Our results broadly demonstrate how signaling factors can leverage information from their subcellular niche to drive spatiotemporal control of cell signaling.
机译:细胞内信号传导的空间控制依赖于感测其亚细胞环境的信号传导蛋白。在许多情况下,大量的上游信号被集中到细胞行为的主调节器上,但仍不清楚单个蛋白如何在细胞内适当的空间位置内快速整合复杂的信号阵列。作为亚细胞空间信息如何控制信号传导活性的模型,我们从不对称分裂的新月形细菌Caulobacter crescentus重构了主调节激酶/磷酸酶CckA的细胞极特异性控制。 CckA仅在其在新细胞极的微区中积累并与假激酶DivL共定位时才作为激酶起作用。两种蛋白质都包含多个PAS域,这是跨生命王国存在的一类多功能感觉域。在这里,我们显示CckA使用其PAS域整合来自DivL的信息及其自身的低聚状态,以控制其激酶和磷酸酶活性的平衡。我们在体外重建了脂质体上的DivL–CckA复合物,发现DivL直接控制CckA激酶/磷酸酶的开关,而对任一CckA催化活性的刺激取决于其两个PAS结构域中的第二个。我们进一步表明,CckA通过多域相互作用来寡聚,这对于通过DivL刺激激酶活性至关重要,而DivL刺激CckA磷酸酶活性独立于CckA均聚。我们的结果广泛证明了信号转导因子如何利用其亚细胞生态位的信息来驱动细胞信号转导的时空控制。

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