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Light-Driven Changes in Energy Metabolism Directly Entrain the Cyanobacterial Circadian Oscillator

机译:光驱动的能量代谢变化直接带动蓝细菌昼夜节律振荡器。

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摘要

Circadian clocks are self-sustained biological oscillators that can be entrained by environmental cues. Although this phenomenon has been studied in many organisms, the molecular mechanisms of entrainment remain unclear. Three cyanobacterial proteins and adenosine triphosphate (ATP) are sufficient to generate oscillations in phosphorylation in vitro. We show that changes in illumination that induce a phase shift in cultured cyanobacteria also cause changes in the ratio of ATP to adenosine diphosphate (ADP). When these nucleotide changes are simulated in the in vitro oscillator, they cause phase shifts similar to those observed in vivo. Physiological concentrations of ADP inhibit kinase activity in the oscillator, and a mathematical model constrained by data shows that this effect is sufficient to quantitatively explain entrainment of the cyanobacterial circadian clock.
机译:昼夜节律时钟是可自我维持的生物振荡器,可能会受到环境提示的干扰。尽管已经在许多生物中研究了这种现象,但夹带的分子机制仍不清楚。三种蓝细菌蛋白和三磷酸腺苷(ATP)足以在体外磷酸化中产生振荡。我们显示,在培养的蓝细菌中引起相移的照明变化也会导致ATP与二磷酸腺苷的比率(ADP)发生变化。当在体外振荡器中模拟这些核苷酸变化时,它们会引起类似于体内观察到的相移。 ADP的生理浓度会抑制振荡器中的激酶活性,并且受数据约束的数学模型表明,这种作用足以定量解释蓝藻生物钟的夹带。

著录项

  • 来源
    《Science》 |2011年第6014期|p.220-223|共4页
  • 作者单位

    Howard Hughes Medical Institute, Center for Systems Biology, Department of Molecular and Cellular Biology, and Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA 02138, USA;

    Center for Chronobiology, Division of Biological Sciences, University of California, San Diego, La Jolla, CA 92093, USA;

    Howard Hughes Medical Institute, Center for Systems Biology, Department of Molecular and Cellular Biology, and Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA 02138, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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