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A Design Principle for a Posttranslational Biochemical Oscillator

机译:翻译后生化振荡器的设计原理

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Multisite phosphorylation plays an important role in biological oscillators such as the circadian clock. Its general role, however, has been elusive. In this theoretical study, we show that a simple substrate with two modification sites acted upon by two opposing enzymes (e.g., a kinase and a phosphatase) can show oscillations in its modification state. An unbiased computational analysis of this oscillator reveals two common characteristics: a unidirectional modification cycle and sequestering of an enzyme by a specific modification state. These two motifs cause a substrate to act as a coupled system in which a unidirectional cycle generates single-molecule oscillators, whereas sequestration synchronizes the population by limiting the available enzyme under conditions in which substrate is in excess. We also demonstrate the conditions under which the oscillation period is temperature compensated, an important feature of the circadian clock. This theoretical model will provide a framework for analyzing and synthesizing posttranslational oscillators.
机译:多位点磷酸化在生物振荡器如生物钟中起着重要作用。但是,它的一般作用难以捉摸。在这项理论研究中,我们表明具有两个修饰位点的简单底物受两种相反的酶(例如激酶和磷酸酶)作用,可以显示其修饰状态的振荡。该振荡器的无偏计算分析显示出两个共同的特征:单向修饰循环和通过特定修饰状态螯合酶。这两个基序使底物充当偶联系统,其中单向循环产生单分子振荡器,而螯合通过限制底物过量的条件下可利用的酶来同步种群。我们还演示了振荡周期得到温度补偿的条件,这是生物钟的重要特征。该理论模型将为分析和合成翻译后振荡器提供一个框架。

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