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一个简化模型阐明了反馈回路和时间延迟在果蝇生物钟振荡器中的作用。

A reduced model clarifies the role of feedback loops and time delays in the Drosophila circadian oscillator.

作者信息

Smolen Paul, Baxter Douglas A, Byrne John H

机构信息

Department of Neurobiology and Anatomy, W. M. Keck Center for the Neurobiology of Learning and Memory, The University of Texas-Houston Medical School, Houston, TX 77225, USA.

出版信息

Biophys J. 2002 Nov;83(5):2349-59. doi: 10.1016/S0006-3495(02)75249-1.

Abstract

Although several detailed models of molecular processes essential for circadian oscillations have been developed, their complexity makes intuitive understanding of the oscillation mechanism difficult. The goal of the present study was to reduce a previously developed, detailed model to a minimal representation of the transcriptional regulation essential for circadian rhythmicity in Drosophila. The reduced model contains only two differential equations, each with time delays. A negative feedback loop is included, in which PER protein represses per transcription by binding the dCLOCK transcription factor. A positive feedback loop is also included, in which dCLOCK indirectly enhances its own formation. The model simulated circadian oscillations, light entrainment, and a phase-response curve with qualitative similarities to experiment. Time delays were found to be essential for simulation of circadian oscillations with this model. To examine the robustness of the simplified model to fluctuations in molecule numbers, a stochastic variant was constructed. Robust circadian oscillations and entrainment to light pulses were simulated with fewer than 80 molecules of each gene product present on average. Circadian oscillations persisted when the positive feedback loop was removed. Moreover, elimination of positive feedback did not decrease the robustness of oscillations to stochastic fluctuations or to variations in parameter values. Such reduced models can aid understanding of the oscillation mechanisms in Drosophila and in other organisms in which feedback regulation of transcription may play an important role.

摘要

尽管已经建立了几个关于昼夜节律振荡所必需的分子过程的详细模型,但它们的复杂性使得直观理解振荡机制变得困难。本研究的目的是将先前开发的详细模型简化为果蝇昼夜节律中对转录调控必不可少的最小表示形式。简化后的模型仅包含两个微分方程,每个方程都有时间延迟。模型包含一个负反馈回路,其中PER蛋白通过结合dCLOCK转录因子来抑制per转录。还包含一个正反馈回路,其中dCLOCK间接增强其自身的形成。该模型模拟了昼夜节律振荡、光诱导以及与实验在性质上相似的相位响应曲线。发现时间延迟对于用该模型模拟昼夜节律振荡至关重要。为了检验简化模型对分子数量波动的稳健性,构建了一个随机变体。当平均每个基因产物的分子数少于80个时,模拟出了稳健的昼夜节律振荡和对光脉冲诱导。当去除正反馈回路时,昼夜节律振荡仍然存在。此外,消除正反馈并没有降低振荡对随机波动或参数值变化的稳健性。这种简化模型有助于理解果蝇以及其他转录反馈调控可能起重要作用的生物体中的振荡机制。

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