CTCF公司
染色质
生物
DNA甲基化
锌指
细胞生物学
表观遗传学
嘉雅宠物
遗传学
增强子
基因
转录因子
染色质重塑
基因表达
作者
Widia Soochit,Frank Sleutels,Grégoire Stik,Marek Bartkuhn,Sreya Basu,Silvia C. Hernández,Sarra Merzouk,Enrique Vidal,Ruben Boers,Joachim Boers,Michael van der Reijden,Bart Geverts,Wiggert A. van Cappellen,Mirjam C. G. N. van den Hout,Zeliha Özgür,Wilfred F. J. van IJcken,Joost Gribnau,Rainer Renkawitz,Thomas Graf,Adriaan B. Houtsmuller,Frank Grosveld,Ralph Stadhouders,Niels Galjart
标识
DOI:10.1038/s41556-021-00722-w
摘要
The 11 zinc finger (ZF) protein CTCF regulates topologically associating domain formation and transcription through selective binding to thousands of genomic sites. Here, we replaced endogenous CTCF in mouse embryonic stem cells with green-fluorescent-protein-tagged wild-type or mutant proteins lacking individual ZFs to identify additional determinants of CTCF positioning and function. While ZF1 and ZF8-ZF11 are not essential for cell survival, ZF8 deletion strikingly increases the DNA binding off-rate of mutant CTCF, resulting in reduced CTCF chromatin residence time. Loss of ZF8 results in widespread weakening of topologically associating domains, aberrant gene expression and increased genome-wide DNA methylation. Thus, important chromatin-templated processes rely on accurate CTCF chromatin residence time, which we propose depends on local sequence and chromatin context as well as global CTCF protein concentration.
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