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PNAS Plus: Active output state of the Synechococcus Kai circadian oscillator

机译:PNAS Plus:Synechococcus Kai昼夜节律振荡器的活动输出状态

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摘要

The mechanisms by which cellular oscillators keep time and transmit temporal information are poorly understood. In cyanobacteria, the timekeeping aspect of the circadian oscillator, composed of the KaiA, KaiB, and KaiC proteins, involves a cyclic progression of phosphorylation states at Ser431 and Thr432 of KaiC. Elucidating the mechanism that uses this temporal information to modulate gene expression is complicated by unknowns regarding the number, structure, and regulatory effects of output components. To identify oscillator signaling states without a complete description of the output machinery, we defined a simple metric, Kai-complex output activity (KOA), that represents the difference in expression of reporter genes between strains that carry specific variants of KaiC and baseline strains that lack KaiC. In the absence of the oscillator, expression of the class 1 paradigm promoter PkaiBC was locked at its usual peak level; conversely, that of the class 2 paradigm promoter PpurF was locked at its trough level. However, for both classes of promoters, peak KOA in wild-type strains coincided late in the circadian cycle near subjective dawn, when KaiC-pST becomes most prevalent (Ser431 is phosphorylated and Thr432 is not). Analogously, peak KOA was detected specifically for the phosphomimetic of KaiC-pST (KaiC-ET). Notably, peak KOA required KaiB, indicating that a KaiBC complex is involved in the output activity. We also found evidence that phosphorylated RpaA (regulator of phycobilisome associated) represses an RpaA-independent output of KOA. A simple mathematical expression successfully simulated two key features of the oscillator—the time of peak KOA and the peak-to-trough amplitude changes.
机译:细胞振荡器保持时间并传输时间信息的机制了解得很少。在蓝细菌中,由KaiA,KaiB和KaiC蛋白组成的昼夜节律振荡器的计时方面涉及KaiC的Ser431和Thr432的磷酸化状态的循环进行。由于关于输出成分的数量,结构和调节作用的未知数,阐明使用该时间信息调节基因表达的机制变得复杂。为了在没有完整描述输出机制的情况下确定振荡器的信号状态,我们定义了一个简单的度量,即Kai-complex输出活动(KOA),它代表了携带KaiC特定变体的菌株与基线菌株之间报告基因表达的差异。缺乏KaiC。在没有振荡器的情况下,第1类范例启动子PkaiBC的表达被锁定在其通常的峰值水平。相反,第2类范例启动子PpurF的启动子被锁定在其谷底水平。但是,对于这两类启动子,当KaiC-pST变得最普遍时(Ser431磷酸化而Thr432则不是),在主观黎明附近的昼夜节律周期中,野生型菌株的峰值KOA重合。类似地,专门针对KaiC-pST(KaiC-ET)的磷酸模拟物检测到了峰值KOA。值得注意的是,KOA峰值需要KaiB,这表明KaiBC复合体参与了输出活动。我们还发现有证据表明磷酸化的RpaA(与藻胆体相关的调节剂)抑制了ROA的KOA独立输出。一个简单的数学表达式成功地模拟了振荡器的两个关键特征-峰值KOA时间和峰谷幅度变化。

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