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计算微观模型用于表观遗传机制研究。

Computational micromodel for epigenetic mechanisms.

机构信息

Centre for Scientific Computing and Complex Systems Modeling, Dublin City University, Dublin, Ireland.

出版信息

PLoS One. 2010 Nov 30;5(11):e14031. doi: 10.1371/journal.pone.0014031.

Abstract

Characterization of the epigenetic profile of humans since the initial breakthrough on the human genome project has strongly established the key role of histone modifications and DNA methylation. These dynamic elements interact to determine the normal level of expression or methylation status of the constituent genes in the genome. Recently, considerable evidence has been put forward to demonstrate that environmental stress implicitly alters epigenetic patterns causing imbalance that can lead to cancer initiation. This chain of consequences has motivated attempts to computationally model the influence of histone modification and DNA methylation in gene expression and investigate their intrinsic interdependency. In this paper, we explore the relation between DNA methylation and transcription and characterize in detail the histone modifications for specific DNA methylation levels using a stochastic approach.

摘要

自人类基因组计划取得初步突破以来,对人类表观基因组特征的研究已经强有力地确立了组蛋白修饰和 DNA 甲基化的关键作用。这些动态因素相互作用,决定了基因组中组成基因的正常表达水平或甲基化状态。最近,有相当多的证据表明,环境压力会隐性地改变表观遗传模式,导致失衡,从而引发癌症的发生。这一系列后果促使人们试图通过计算方法来模拟组蛋白修饰和 DNA 甲基化对基因表达的影响,并研究它们的内在相关性。在本文中,我们通过随机方法探索了 DNA 甲基化与转录之间的关系,并详细描述了特定 DNA 甲基化水平的组蛋白修饰特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d63c/2994705/b921135b42d6/pone.0014031.g001.jpg

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