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Circadian clocks go in vitro: purely post-translational oscillators in cyanobacteria

机译:昼夜节律钟在体外:蓝细菌中的纯翻译后振荡器

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摘要

Recent findings about the core of the circadian oscillator in cyanobacteria are challenging the dogma that such clocks are driven through transcriptional–translational feedback regulation. Instead, the master pacemaker is independent of both transcription and translation, and consists of self-sustained oscillations in the phosphorylation status of the KaiC protein in vivo. Using a minimal cocktail of three recombinant proteins with adenosine triphosphate, the core clock was even reproduced in vitro. The so-born chemical oscillator could reproduce accurately temperature compensation and altered period phenotypes in mutants. This system now provides an ideal playground for rebuilding the circadian clock by adding successive components while understanding every single step with chemical resolution.
机译:关于蓝藻中昼夜节律振荡器核心的最新发现正向教条提出挑战,即这样的时钟是通过转录-翻译反馈调节来驱动的。相反,主起搏器不依赖转录和翻译,并且由KaiC蛋白在体内的磷酸化状态自维持的振荡组成。使用最少的三种重组蛋白与三磷酸腺苷的混合物,甚至可以在体外复制核心时钟。出生的化学振荡器可以准确地复制突变体中的温度补偿和周期表型。该系统现在通过添加连续的组件,同时了解化学分辨率的每个步骤,为重建生物钟提供了理想的场所。

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