表观遗传学
DNA甲基化
染色质
生物
人类基因组
RNA导向的DNA甲基化
遗传学
甲基化
基因组
照明菌甲基化试验
表观遗传学
DNA
计算生物学
基因
基因表达调控
体育锻炼的表观遗传学
差异甲基化区
基因组组织
复制计时
细胞
基因组学
作者
Jingtian Zhou,Yue Wu,Hanqing Liu,Wei Tian,Rosa Castanon,Anna Bartlett,Zuolong Zhang,Guocong Yao,Difang Shi,Ben Clock,Samantha Marcotte,Joseph R. Nery,Michelle Liem,Naomi Claffey,Lara Boggeman,Cesar Barragan,Rafael Arrojo e Drigo,Annika K. Weimer,Minyi Shi,Johnathan Cooper‐Knock
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-07-23
卷期号:393 (6809): eadx0673-eadx0673
标识
DOI:10.1126/science.adx0673
摘要
Higher-order chromatin structure and DNA methylation are critical for gene regulation, but how these vary across the human body remains unclear. We performed multiomic profiling of three-dimensional (3D) genome structure and DNA methylation for 86,689 single nuclei across 16 tissues, identifying 35 major and 206 cell subtypes. We revealed extensive changes in CG and non-CG methylation across cell types and characterized 3D chromatin structure at an unprecedented cellular resolution. Extensive discrepancies exist between cell types delineated by DNA methylation and genome structure, which indicates that the role of distinct epigenomic features in maintaining cell identity may vary by lineage. This study expands our understanding of the diversity of DNA methylation and chromatin structure and offers a reference for exploring gene regulation in human health and disease.
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