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Modeling Circadian Oscillations with Interlocking Positive and Negative Feedback Loops

机译:使用互锁的正反馈和负反馈环路模拟昼夜节律振荡

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摘要

Both positive and negative feedback loops of transcriptional regulation have been proposed to be important for the generation of circadian rhythms. To test the sufficiency of the proposed mechanisms, two differential equation-based models were constructed to describe theNeurospora crassa and Drosophila melanogastercircadian oscillators. In the model of the Neurosporaoscillator, FRQ suppresses frq transcription by binding to a complex of the transcriptional activators WC-1 and WC-2, thus yielding negative feedback. FRQ also activates synthesis of WC-1, which in turn activates frq transcription, yielding positive feedback. In the model of the Drosophila oscillator, PER and TIM are represented by a “lumped” variable, “PER.” PER suppresses its own transcription by binding to the transcriptional regulator dCLOCK, thus yielding negative feedback. PER also binds to dCLOCK to de-repressdclock, and dCLOCK in turn activates pertranscription, yielding positive feedback. Both models displayed circadian oscillations that were robust to parameter variations and to noise and that entrained to simulated light/dark cycles. Circadian oscillations were only obtained if time delays were included to represent processes not modeled in detail (e.g., transcription and translation). In both models, oscillations were preserved when positive feedback was removed.
机译:已经提出转录调节的正反馈和负反馈环对于昼夜节律的产生都是重要的。为了测试提出的机制的充分性,构建了两个基于微分方程的模型来描述神经孢霉和果蝇黑夜生物的昼夜节律振荡器。在神经孢子振荡器的模型中,FRQ通过与转录激活因子WC-1和WC-2的复合体结合来抑制frq转录,从而产生负反馈。 FRQ还激活WC-1的合成,从而激活frq转录,从而产生正反馈。在果蝇振荡器的模型中,PER和TIM用“集中”变量“ PER”表示。 PER通过与转录调节子dCLOCK结合来抑制自身的转录,从而产生负反馈。 PER还与dCLOCK绑定在一起以解除抑制时钟,而dCLOCK依次激活pertranscription,产生正反馈。两种模型均显示出昼夜节律振荡,这些振荡对参数变化和噪声均具有鲁棒性,并且对模拟的明/暗周期也具有一定的抵抗力。仅当包括时间延迟以表示未详细建模的过程(例如,转录和翻译)时,才能获得昼夜节律振荡。在这两个模型中,当消除正反馈后,振荡都得以保留。

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