CTCF公司
染色质
生物
嘉雅宠物
表观遗传学
计算生物学
二价染色质
细胞生物学
遗传学
相互作用体
支架/基质附着区域
增强子
基因组
粘蛋白
染色质重塑
组蛋白
基因
转录因子
染色体构象捕获
作者
Lusy Handoko,Xu Han,Guoliang Li,Chew Yee Ngan,Elaine Guo Yan Chew,Marie Schnapp,Charlie Wah Heng Lee,Chaopeng Ye,Joanne Lim Hui Ping,Fabianus Hendriyan Mulawadi,Eleanor Wong,Jianpeng Sheng,Yubo Zhang,Thompson Poh,Chee Seng Chan,Galih Kunarso,Atif Shahab,Guillaume Bourque,Valère Cacheux-Rataboul,Wing-Kin Sung,Yijun Ruan,Chia‐Lin Wei
出处
期刊:Nature Genetics
[Springer Nature]
日期:2011-06-19
卷期号:43 (7): 630-638
被引量:576
摘要
Mammalian genomes are viewed as functional organizations that orchestrate spatial and temporal gene regulation. CTCF, the most characterized insulator-binding protein, has been implicated as a key genome organizer. However, little is known about CTCF-associated higher-order chromatin structures at a global scale. Here we applied chromatin interaction analysis by paired-end tag (ChIA-PET) sequencing to elucidate the CTCF-chromatin interactome in pluripotent cells. From this analysis, we identified 1,480 cis- and 336 trans-interacting loci with high reproducibility and precision. Associating these chromatin interaction loci with their underlying epigenetic states, promoter activities, enhancer binding and nuclear lamina occupancy, we uncovered five distinct chromatin domains that suggest potential new models of CTCF function in chromatin organization and transcriptional control. Specifically, CTCF interactions demarcate chromatin-nuclear membrane attachments and influence proper gene expression through extensive cross-talk between promoters and regulatory elements. This highly complex nuclear organization offers insights toward the unifying principles that govern genome plasticity and function.
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