核仁
异染色质
染色质
复制计时
生物
遗传学
异染色质蛋白1
常染色质
构成性异染色质
核糖体生物发生
核仁组成区
组蛋白
着丝粒
基因组
细胞生物学
基因
染色体
核糖体
核糖核酸
细胞质
作者
Ting Peng,Yingping Hou,Haowei Meng,Yong Cao,Xiaotian Wang,Lumeng Jia,Qing Chen,Wei Xing Zheng,Yujie Sun,Hebing Chen,Tingting Li,Cheng Li
标识
DOI:10.1038/s41467-023-36021-1
摘要
Abstract As the largest substructures in the nucleus, nucleoli are the sites of ribosome biogenesis. Increasing evidence indicates that nucleoli play a key role in the organization of 3D genome architecture, but systematic studies of nucleolus-associated chromatin interactions are lacking. Here, we developed a nucleolus Hi-C (nHi-C) experimental technique to enrich nucleolus-associated chromatin interactions. Using the nHi-C experiment, we identify 264 high-confidence nucleolus-associated domains (hNADs) that form strong heterochromatin interactions associated with the nucleolus and consist of 24% of the whole genome in HeLa cells. Based on the global hNAD inter-chromosomal interactions, we find five nucleolar organizer region (NOR)-bearing chromosomes formed into two clusters that show different interaction patterns, which is concordant with their epigenetic states and gene expression levels. hNADs can be divided into three groups that display distinct cis / trans interaction signals, interaction frequencies associated with nucleoli, distance from the centromeres, and overlap percentage with lamina-associated domains (LADs). Nucleolus disassembly caused by Actinomycin D (ActD) significantly decreases the strength of hNADs and affects compartment/TAD strength genome-wide. In summary, our results provide a global view of heterochromatin interactions organized around nucleoli and demonstrate that nucleoli act as an inactive inter-chromosomal hub to shape both compartments and TADs.
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