肝细胞癌基因转录的3d表观基因组调控

Yuliang Feng, Ping Wang, Liuyang Cai, Meixiao Zhan, Fan He, Jiahui Wang, Yong Li, Eva Gega, Wei Zhang, Wei Zhao, Yongjie Xin, Xudong Chen, Yijun Ruan, Ligong Lu
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引用次数: 1

摘要

肝细胞癌(HCC)中转录失调的根本原因尚不清楚。为了研究潜在的机制,在THLE2(一种正常肝细胞细胞系)和HepG2(一种肝癌细胞系)的细胞模型中使用染色质拓扑、基因组和表观基因组变异以及转录输出的综合方法进行了全面的3d -表观基因组分析。比较THLE2和HepG2的3d表观基因组发现,大多数hcc相关基因是在RNA聚合酶II (RNAPII)介导的复杂染色质相互作用中组织的。结合全基因组关联研究(GWAS)数据,可以识别非编码遗传变异,这些变异富集于通过远程染色质相互作用连接hcc相关基因启动子的远端增强子,突出了它们的功能作用。有趣的是,CTCF结合并环结hcc相关基因的近端似乎形成了覆盖rnapii介导的染色质相互作用的染色质结构。研究进一步证明,在靠近hcc相关基因的CTCF基序亚基DNA低甲基化的表观遗传变异可以改变染色质拓扑结构,从而改变rnapii介导的染色质相互作用并导致转录失调。总之,3d表观基因组分析为HCC细胞中涉及遗传学、表观遗传学和染色质拓扑结构的多方面相互作用提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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3D-Epigenomic Regulation of Gene Transcription in Hepatocellular Carcinoma

The fundamental cause of transcription dysregulation in hepatocellular carcinoma (HCC) remains elusive. To investigate the underlying mechanisms, comprehensive 3D-epigenomic analyses are performed in cellular models of THLE2 (a normal hepatocytes cell line) and HepG2 (a hepatocellular carcinoma cell line) using integrative approaches for chromatin topology, genomic and epigenomic variation, and transcriptional output. Comparing the 3D-epigenomes in THLE2 and HepG2 reveal that most HCC-associated genes are organized in complex chromatin interactions mediated by RNA polymerase II (RNAPII). Incorporation of genome-wide association studies (GWAS) data enables the identification of non-coding genetic variants that are enriched in distal enhancers connecting to the promoters of HCC-associated genes via long-range chromatin interactions, highlighting their functional roles. Interestingly, CTCF binding and looping proximal to HCC-associated genes appear to form chromatin architectures that overarch RNAPII-mediated chromatin interactions. It is further demonstrated that epigenetic variants by DNA hypomethylation at a subset of CTCF motifs proximal to HCC-associated genes can modify chromatin topological configuration, which in turn alter RNAPII-mediated chromatin interactions and lead to dysregulation of transcription. Together, the 3D-epigenomic analyses provide novel insights of multifaceted interplays involving genetics, epigenetics, and chromatin topology in HCC cells.

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