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Quinone sensing by the circadian input kinase of the cyanobacterial circadian clock

机译:蓝藻生物钟的生物钟输入激酶检测醌

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摘要

Circadian rhythms are endogenous cellular programs that time metabolic and behavioral events to occur at optimal times in the daily cycle. Light and dark cycles synchronize the endogenous clock with the external environment through a process called entrainment. Previously, we identified the bacteriophytochrome-like circadian input kinase CikA as a key factor for entraining the clock in the cyanobacterium Synechococcus elongatus PCC 7942. Here, we present evidence that CikA senses not light but rather the redox state of the plastoquinone pool, which, in photosynthetic organisms, varies as a function of the light environment. Furthermore, CikA associates with the Kai proteins of the circadian oscillator, and it influences the phosphorylation state of KaiC during resetting of circadian phase by a dark pulse. The abundance of CikA varies inversely with light intensity, and its stability decreases in the presence of the quinone analog 2,5-dibromo-3-methyl-6-isopropylp-benzoquinone (DBMIB). The pseudo-receiver domain of CikA is crucial for sensitivity to DBMIB, and it binds the quinone directly, a demonstration of a previously unrecognized ligand-binding role for the receiver fold. Our results suggest that resetting the clock in S. elongatus is metabolism-dependent and that it is accomplished through the interaction of the circadian oscillator with CikA.
机译:昼夜节律是内源性细胞程序,可将代谢和行为事件定时在每日周期的最佳时间发生。明亮和黑暗周期通过称为夹带的过程将内源时钟与外部环境同步。以前,我们将细菌性植物色素样生物钟输入激酶CikA识别为延长蓝藻Synechococcus elongatus PCC 7942中时钟的关键因素。在这里,我们提供的证据表明CikA不仅感知光,而且还感知到质体醌池的氧化还原状态。在光合作用生物中,随光环境的变化而变化。此外,CikA与昼夜节律振荡器的Kai蛋白相关联,并且它在昼夜节律相重置过程中通过暗脉冲影响KaiC的磷酸化状态。 CikA的丰度与光强度成反比,并且在存在醌类似物2,5-二溴-3-甲基-6-异丙基对苯醌(DBMIB)的情况下,其稳定性降低。 CikA的伪受体结构域对DBMIB的敏感性至关重要,它直接结合醌,这是受体折叠以前无法识别的配体结合作用的例证。我们的结果表明,重置长链金钟菌的时钟是新陈代谢依赖性的,并且这可以通过昼夜节律振荡器与CikA的相互作用来完成。

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