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分割时钟分子动力学中的延迟管理权衡。

Delay-managed tradeoff in the molecular dynamics of the segmentation clock.

作者信息

Song Henglin, Yuan Zhanjiang, Zhou Tianshou

机构信息

School of Marine Science, Sun Yat-Sen University, Guangzhou 510275, China.

出版信息

Mol Biosyst. 2013 Jun;9(6):1436-46. doi: 10.1039/c3mb70046a. Epub 2013 Mar 21.

Abstract

The molecular segmentation clock is a complex regulatory network that governs the periodic somite segmentation in vertebrate embryos. Underlying the rhythm of the segmentation clock is a single-cell level pace-making circuit, where inevitable molecular noise and time delay impose normal operating constraints to the pace-making. However, how the molecular mechanisms of the core circuit of the segmentation clock coordinate the operating constraints and maintain the rhythmic nature of the developmental process remains poorly understood. To address this question, we construct two biologically-motivated mathematical models with multiple clock protein transcription binding sites, with differential or rate-limited decay rates for protein monomers and dimers. We demonstrate that the rate-limited decay significantly enlarges the parameter space of noise-induced and delay-induced oscillations. Interestingly, focusing on the stochastic characters of noise-induced and delay-induced oscillations in terms of phase coherence and phase averaged amplitude noise in the polar coordinate, we find that there is a delay-managed tradeoff between phase coherence and phase averaged amplitude noise. In particular, the model with both multiple binding sites and rate-limited decay can show regular tunability as the delay increases. Our results indicate that transcriptional and post-translational mechanisms constrain the combined effects of noise and delay on the molecular dynamics of the segmentation clock.

摘要

分子分割时钟是一个复杂的调控网络,它控制着脊椎动物胚胎中周期性的体节分割。分割时钟节律的基础是一个单细胞水平的起搏电路,其中不可避免的分子噪声和时间延迟对起搏施加了正常的运行限制。然而,分割时钟核心电路的分子机制如何协调这些运行限制并维持发育过程的节律性,仍然知之甚少。为了解决这个问题,我们构建了两个具有生物学动机的数学模型,这些模型具有多个时钟蛋白转录结合位点,对蛋白质单体和二聚体具有不同的或速率受限的降解速率。我们证明,速率受限的降解显著扩大了噪声诱导和延迟诱导振荡的参数空间。有趣的是,从极坐标中的相位相干性和相位平均幅度噪声方面关注噪声诱导和延迟诱导振荡的随机特性,我们发现相位相干性和相位平均幅度噪声之间存在延迟管理的权衡。特别是,具有多个结合位点和速率受限降解的模型随着延迟增加可以表现出规则的可调性。我们的结果表明,转录和翻译后机制限制了噪声和延迟对分割时钟分子动力学的综合影响。

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