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构建稳健的反馈控制机制以确保组蛋白基因表达与DNA复制的可靠协调

Modelling Robust Feedback Control Mechanisms That Ensure Reliable Coordination of Histone Gene Expression with DNA Replication.

作者信息

Christopher Andrea, Hameister Heike, Corrigall Holly, Ebenhöh Oliver, Müller Berndt, Ullner Ekkehard

机构信息

School of Medicine, Medical Sciences and Nutrition, Institute of Medical Sciences, University of Aberdeen Foresterhill, Aberdeen, Scotland, United Kingdom.

Department of Physics (SUPA) and Institute for Complex Systems and Mathematical Biology (ICSMB), University of Aberdeen, Aberdeen, Scotland, United Kingdom.

出版信息

PLoS One. 2016 Oct 31;11(10):e0165848. doi: 10.1371/journal.pone.0165848. eCollection 2016.

Abstract

Histone proteins are key elements in the packing of eukaryotic DNA into chromosomes. A little understood control system ensures that histone gene expression is balanced with DNA replication so that histone proteins are produced in appropriate amounts. Disturbing or disrupting this system affects genome stability and gene expression, and has detrimental consequences for human development and health. It has been proposed that feedback control involving histone proteins contributes to this regulation and there is evidence implicating cell cycle checkpoint molecules activated when DNA synthesis is impaired in this control. We have developed mathematical models that incorporate these control modes in the form of inhibitory feedback of histone gene expression from free histone proteins, and alternatively a direct link that couples histone RNA synthesis to DNA synthesis. Using our experimental evidence and related published data we provide a simplified description of histone protein synthesis during S phase. Both models reproduce the coordination of histone gene expression with DNA replication during S phase and the down-regulation of histone RNA when DNA synthesis is interrupted, but only the model incorporating histone protein feedback control was able to effectively simulate the coordinate expression of a simplified histone gene family. Our combined theoretical and experimental approach supports the hypothesis that the regulation of histone gene expression involves feedback control.

摘要

组蛋白是真核生物DNA包装成染色体的关键要素。一个鲜为人知的控制系统确保组蛋白基因表达与DNA复制保持平衡,从而使组蛋白能够适量产生。干扰或破坏这个系统会影响基因组稳定性和基因表达,并对人类发育和健康产生有害影响。有人提出,涉及组蛋白的反馈控制有助于这种调节,并且有证据表明,当DNA合成在这种控制中受损时,细胞周期检查点分子会被激活。我们已经开发出数学模型,这些模型以游离组蛋白对组蛋白基因表达的抑制反馈形式纳入这些控制模式,或者以将组蛋白RNA合成与DNA合成相耦合的直接联系形式纳入。利用我们的实验证据和相关已发表数据,我们对S期组蛋白的合成进行了简化描述。两个模型都再现了S期组蛋白基因表达与DNA复制的协调以及DNA合成中断时组蛋白RNA的下调,但只有包含组蛋白反馈控制的模型能够有效模拟一个简化组蛋白基因家族的协调表达。我们结合理论和实验的方法支持了组蛋白基因表达调控涉及反馈控制这一假说。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1272/5087906/a02b7aa8c680/pone.0165848.g001.jpg

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