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人类 5-羟甲基胞嘧啶组织图谱通过基因和增强子调控表现出组织特异性。

A human tissue map of 5-hydroxymethylcytosines exhibits tissue specificity through gene and enhancer modulation.

机构信息

Department of Chemistry, Department of Biochemistry and Molecular Biology, Institute for Biophysical Dynamics, University of Chicago, Chicago, IL, USA.

Howard Hughes Medical Institute, University of Chicago, Chicago, IL, USA.

出版信息

Nat Commun. 2020 Dec 2;11(1):6161. doi: 10.1038/s41467-020-20001-w.

Abstract

DNA 5-hydroxymethylcytosine (5hmC) modification is known to be associated with gene transcription and frequently used as a mark to investigate dynamic DNA methylation conversion during mammalian development and in human diseases. However, the lack of genome-wide 5hmC profiles in different human tissue types impedes drawing generalized conclusions about how 5hmC is implicated in transcription activity and tissue specificity. To meet this need, we describe the development of a 5hmC tissue map by characterizing the genomic distributions of 5hmC in 19 human tissues derived from ten organ systems. Subsequent sequencing results enabled the identification of genome-wide 5hmC distributions that uniquely separates samples by tissue type. Further comparison of the 5hmC profiles with transcriptomes and histone modifications revealed that 5hmC is preferentially enriched on tissue-specific gene bodies and enhancers. Taken together, the results provide an extensive 5hmC map across diverse human tissue types that suggests a potential role of 5hmC in tissue-specific development; as well as a resource to facilitate future studies of DNA demethylation in pathogenesis and the development of 5hmC as biomarkers.

摘要

DNA 5-羟甲基胞嘧啶(5hmC)修饰与基因转录有关,常被用作研究哺乳动物发育过程中和人类疾病中动态 DNA 甲基化转化的标记。然而,不同人类组织类型中缺乏全基因组 5hmC 图谱,这阻碍了人们对 5hmC 如何影响转录活性和组织特异性的普遍结论的得出。为了满足这一需求,我们通过对来自十个器官系统的 19 个人类组织中 5hmC 的基因组分布进行描述,开发了一个 5hmC 组织图谱。随后的测序结果能够确定全基因组 5hmC 分布,这些分布可以根据组织类型将样本独特地区分开来。进一步将 5hmC 图谱与转录组和组蛋白修饰进行比较,结果表明 5hmC 优先富集在组织特异性基因体和增强子上。综上所述,这些结果提供了一个广泛的人类组织类型的 5hmC 图谱,提示 5hmC 在组织特异性发育中可能具有潜在作用;同时也为研究发病机制中的 DNA 去甲基化以及将 5hmC 作为生物标志物的未来研究提供了资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf18/7710742/4d73b01a2d64/41467_2020_20001_Fig1_HTML.jpg

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