生物
染色质
增强子
染色体构象捕获
基因组
基因
转录因子
遗传学
嘉雅宠物
基因组组织
计算生物学
基因表达调控
细胞生物学
染色质重塑
作者
Boyan Bonev,Netta Mendelson Cohen,Quentin Szabo,Lauriane Fritsch,Giorgio L. Papadopoulos,Yaniv Lubling,Xiaole Xu,Xiaodan Lv,Jean‐Philippe Hugnot,Amos Tanay,Giacomo Cavalli
出处
期刊:Cell
[Cell Press]
日期:2017-10-01
卷期号:171 (3): 557-572.e24
被引量:1018
标识
DOI:10.1016/j.cell.2017.09.043
摘要
Chromosome conformation capture technologies have revealed important insights into genome folding. Yet, how spatial genome architecture is related to gene expression and cell fate remains unclear. We comprehensively mapped 3D chromatin organization during mouse neural differentiation in vitro and in vivo, generating the highest-resolution Hi-C maps available to date. We found that transcription is correlated with chromatin insulation and long-range interactions, but dCas9-mediated activation is insufficient for creating TAD boundaries de novo. Additionally, we discovered long-range contacts between gene bodies of exon-rich, active genes in all cell types. During neural differentiation, contacts between active TADs become less pronounced while inactive TADs interact more strongly. An extensive Polycomb network in stem cells is disrupted, while dynamic interactions between neural transcription factors appear in vivo. Finally, cell type-specific enhancer-promoter contacts are established concomitant to gene expression. This work shows that multiple factors influence the dynamics of chromatin interactions in development.
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