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动态差异表达(DyDE)揭示了拟南芥生物钟振荡器的周期调控机制。

Dynamical differential expression (DyDE) reveals the period control mechanisms of the Arabidopsis circadian oscillator.

机构信息

Luxembourg Centre for Systems Biomedicine, University of Luxembourg, Belvaux, Luxembourg.

Department of Plant Sciences, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS Comput Biol. 2019 Jan 31;15(1):e1006674. doi: 10.1371/journal.pcbi.1006674. eCollection 2019 Jan.

Abstract

The circadian oscillator, an internal time-keeping device found in most organisms, enables timely regulation of daily biological activities by maintaining synchrony with the external environment. The mechanistic basis underlying the adjustment of circadian rhythms to changing external conditions, however, has yet to be clearly elucidated. We explored the mechanism of action of nicotinamide in Arabidopsis thaliana, a metabolite that lengthens the period of circadian rhythms, to understand the regulation of circadian period. To identify the key mechanisms involved in the circadian response to nicotinamide, we developed a systematic and practical modeling framework based on the identification and comparison of gene regulatory dynamics. Our mathematical predictions, confirmed by experimentation, identified key transcriptional regulatory mechanisms of circadian period and uncovered the role of blue light in the response of the circadian oscillator to nicotinamide. We suggest that our methodology could be adapted to predict mechanisms of drug action in complex biological systems.

摘要

生物钟振荡器是一种存在于大多数生物体中的内部计时装置,它通过与外部环境保持同步,实现对日常生物活动的适时调节。然而,生物钟节律如何根据外部条件的变化进行调整的机制尚未得到明确阐述。我们探索了烟酰胺在拟南芥中的作用机制,烟酰胺是一种能够延长生物钟周期的代谢物,以了解生物钟周期的调节。为了确定生物钟对烟酰胺反应的关键机制,我们基于基因调控动力学的识别和比较,开发了一个系统而实用的建模框架。我们的数学预测得到了实验的证实,确定了生物钟周期的关键转录调控机制,并揭示了蓝光在生物钟振荡器对烟酰胺反应中的作用。我们认为,我们的方法可以应用于预测复杂生物系统中药物作用的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f5c/6377142/0919e7cd2576/pcbi.1006674.g001.jpg

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