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首页> 外文期刊>The Journal of biological chemistry >RpaB, Another Response Regulator Operating Circadian Clock-dependent Transcriptional Regulation in Synechococcus elongatus PCC 7942
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RpaB, Another Response Regulator Operating Circadian Clock-dependent Transcriptional Regulation in Synechococcus elongatus PCC 7942

机译:RPAB,另一种响应调节器在SyneChocccus Elongatus PCC 7942中操作昼夜时钟依赖性转录调节

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The circadian clock of cyanobacteria is composed of KaiA, KaiB, and KaiC proteins, and the SasA-RpaA two-component system has been implicated in the regulation of one of the output pathways of the clock. In this study, we show that another response regulator that is essential for viability, the RpaA paralog, RpaB, plays a central role in the transcriptional oscillation of clock-regulated genes. In vivo and in vitro analyses revealed that RpaB and not RpaA could specifically bind to the kaiBC promoter, possibly repressing transcription during subjective night. This suggested that binding may be terminated by RpaA to activate gene transcription during subjective day. Moreover, we found that rpoD6 and sigF2, which encode group-2 and group-3 σ factors for RNA polymerase, respectively, were also targets of the RpaAB system, suggesting that a specific group of σ factors can propagate genome-wide transcriptional oscillation. Our findings thus reveal a novel mechanism for a circadian output pathway that is mediated by two paralogous response regulators.
机译:Cyanobacteria的昼夜节拍时钟由KAIA,KAIB和KAIC蛋白组成,SASA-RPAA双组分系统已涉及时钟输出路径之一的调节。在这项研究中,我们表明另一个对生存能力,RPAA副病虫病,RPAB至关重要的另一反应调节剂在时钟调节基因的转录振荡中起着核心作用。体内和体外分析显示RPAB和NOT RPAA可以特异性结合KAIBC启动子,可能在主观夜晚抑制转录。这表明RPAA可以通过RPAA终止结合以在主观日期激活基因转录。此外,我们发现分别编码RNA聚合酶组-2和组-3σ因子的RPOD6和SIGF2也是RPAAB系统的靶标,表明特定组的σ因子可以传播宽的基因组转录振荡。因此,我们的研究结果揭示了一种新的用于循环输出途径的新机制,其由两种副骨反应调节剂介导的。

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