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从染色质结构修饰预测基因表达变化。

Predicting gene expression changes from chromatin structure modification.

作者信息

Senapati Swayamshree, Irshad Inayat Ullah, Sharma Ajeet K, Kumar Hemant

机构信息

School of Basic Sciences, Indian Institute of Technology Bhubaneswar, Argul, Odisha, 752050, India.

Department of Physics, Indian Institute of Technology Jammu, Jammu, 181221, India.

出版信息

NPJ Syst Biol Appl. 2025 Apr 15;11(1):34. doi: 10.1038/s41540-025-00510-4.

Abstract

Spatial organization of chromatin plays a critical role in gene transcription, but connecting population-averaged HiC data to functional outcomes remains a challenge. We present a computational framework linking HiC contact map to gene transcription. Utilizing a bead-spring polymer model informed by HiC contact maps, we generate an ensemble of 3D conformations for a given genomic locus. These conformations are then coupled to gene transcription levels through a Markov chain model, with transition rates derived from molecular dynamics simulations. The efficacy of this framework is demonstrated by simulating the perturbation of a CTCF-mediated TAD boundary, impacting the expression of sox9 and kcnj2. Our model quantitatively reproduces experimentally observed changes in gene expression, revealing that the increased kcnj2 transcription is a consequence of enhancers within the sox9 TAD becoming accessible upon boundary disruption. Quantifying enhancer impact, our model can also identify functional enhancers. This framework enhances our understanding of the relationship between chromosome spatial architecture and gene regulation.

摘要

染色质的空间组织在基因转录中起着关键作用,但将群体平均的HiC数据与功能结果联系起来仍然是一个挑战。我们提出了一个将HiC接触图与基因转录联系起来的计算框架。利用由HiC接触图提供信息的珠簧聚合物模型,我们为给定的基因组位点生成了一组三维构象。然后,这些构象通过马尔可夫链模型与基因转录水平相耦合,其转移速率来自分子动力学模拟。通过模拟CTCF介导的TAD边界的扰动,影响sox9和kcnj2的表达,证明了该框架的有效性。我们的模型定量地再现了实验观察到的基因表达变化,揭示了kcnj2转录增加是边界破坏后sox9 TAD内的增强子变得可及的结果。通过量化增强子的影响,我们的模型还可以识别功能性增强子。这个框架增强了我们对染色体空间结构与基因调控之间关系的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f47/12000410/d2f009cbdfc5/41540_2025_510_Fig1_HTML.jpg

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