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Epigenetic control of gene expression: Potential implications for cancer treatment.基因表达的表观遗传控制:对癌症治疗的潜在影响。
Crit Rev Oncol Hematol. 2017 Mar;111:166-172. doi: 10.1016/j.critrevonc.2017.01.020. Epub 2017 Feb 4.
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Juicer Provides a One-Click System for Analyzing Loop-Resolution Hi-C Experiments.榨汁机为环解析 Hi-C 实验的分析提供了一键式系统。
Cell Syst. 2016 Jul;3(1):95-8. doi: 10.1016/j.cels.2016.07.002.
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Histone acetyltransferases: challenges in targeting bi-substrate enzymes.组蛋白乙酰转移酶:靶向双底物酶面临的挑战
Clin Epigenetics. 2016 May 26;8:59. doi: 10.1186/s13148-016-0225-2. eCollection 2016.
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The 3D Genome as Moderator of Chromosomal Communication.作为染色体通讯调节因子的三维基因组
Cell. 2016 Mar 10;164(6):1110-1121. doi: 10.1016/j.cell.2016.02.007.
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Understanding Spatial Genome Organization: Methods and Insights.理解空间基因组组织:方法与见解
Genomics Proteomics Bioinformatics. 2016 Feb;14(1):7-20. doi: 10.1016/j.gpb.2016.01.002. Epub 2016 Feb 11.
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TopDom: an efficient and deterministic method for identifying topological domains in genomes.TopDom:一种用于识别基因组中拓扑结构域的高效且确定性的方法。
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HiC-Pro: an optimized and flexible pipeline for Hi-C data processing.HiC-Pro:一种用于Hi-C数据处理的优化且灵活的流程。
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Altering cancer transcriptomes using epigenomic inhibitors.使用表观基因组抑制剂改变癌症转录组
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9
Joint annotation of chromatin state and chromatin conformation reveals relationships among domain types and identifies domains of cell-type-specific expression.染色质状态和染色质构象的联合注释揭示了结构域类型之间的关系,并识别出细胞类型特异性表达的结构域。
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A 3D map of the human genome at kilobase resolution reveals principles of chromatin looping.一份碱基对分辨率的人类基因组三维图谱揭示了染色质环化的原理。
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三维分析揭示了增强子抑制剂改变染色质相互作用,从而携带 TCF7L2 调节的癌症基因特征。

Three-dimensional analysis reveals altered chromatin interaction by enhancer inhibitors harbors TCF7L2-regulated cancer gene signature.

机构信息

Biomedical Health Sciences Department, University of Vermont, Burlington, VT, USA.

Cellular, Molecular, and Biomedical Sciences Program, University of Vermont, Burlington, VT, USA.

出版信息

J Cell Biochem. 2019 Mar;120(3):3056-3070. doi: 10.1002/jcb.27449. Epub 2018 Dec 11.

DOI:10.1002/jcb.27449
PMID:30548288
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6476548/
Abstract

Distal regulatory elements influence the activity of gene promoters through chromatin looping. Chromosome conformation capture (3C) methods permit identification of chromatin contacts across different regions of the genome. However, due to limitations in the resolution of these methods, the detection of functional chromatin interactions remains a challenge. In the current study, we employ an integrated approach to define and characterize the functional chromatin contacts of human pancreatic cancer cells. We applied tethered chromatin capture to define classes of chromatin domains on a genome-wide scale. We identified three types of structural domains (topologically associated, boundary, and gap) and investigated the functional relationships of these domains with respect to chromatin state and gene expression. We uncovered six distinct sub-domains associated with epigenetic states. Interestingly, specific epigenetically active domains are sensitive to treatment with histone acetyltransferase (HAT) inhibitors and decrease in H3K27 acetylation levels. To examine whether the subdomains that change upon drug treatment are functionally linked to transcription factor regulation, we compared TCF7L2 chromatin binding and gene regulation to HAT inhibition. We identified a subset of coding RNA genes that together can stratify pancreatic cancer patients into distinct survival groups. Overall, this study describes a process to evaluate the functional features of chromosome architecture and reveals the impact of epigenetic inhibitors on chromosome architecture and identifies genes that may provide insight into disease outcome.

摘要

远端调控元件通过染色质环化影响基因启动子的活性。染色体构象捕获(3C)方法允许鉴定基因组不同区域之间的染色质接触。然而,由于这些方法的分辨率有限,功能染色质相互作用的检测仍然是一个挑战。在本研究中,我们采用综合方法来定义和表征人胰腺癌细胞的功能染色质接触。我们应用固定染色质捕获方法在全基因组范围内定义染色质域类别。我们鉴定了三种结构域(拓扑相关、边界和间隙),并研究了这些结构域与染色质状态和基因表达的功能关系。我们发现了六个与表观遗传状态相关的不同亚域。有趣的是,特定的表观遗传活跃域对组蛋白乙酰转移酶(HAT)抑制剂敏感,并且 H3K27 乙酰化水平降低。为了研究药物处理后发生变化的亚域是否与转录因子调节功能相关,我们将 TCF7L2 染色质结合和基因调控与 HAT 抑制进行了比较。我们鉴定了一组编码 RNA 基因,它们可以共同将胰腺癌患者分为不同的生存组。总的来说,这项研究描述了一种评估染色体结构功能特征的过程,揭示了表观遗传抑制剂对染色体结构的影响,并鉴定了可能为疾病结果提供见解的基因。