Rubin Adam J, Barajas Brook C, Furlan-Magaril Mayra, Lopez-Pajares Vanessa, Mumbach Maxwell R, Howard Imani, Kim Daniel S, Boxer Lisa D, Cairns Jonathan, Spivakov Mikhail, Wingett Steven W, Shi Minyi, Zhao Zhixin, Greenleaf William J, Kundaje Anshul, Snyder Michael, Chang Howard Y, Fraser Peter, Khavari Paul A
Program in Epithelial Biology, Stanford University School of Medicine, Stanford, California, USA.
Nuclear Dynamics Programme, Babraham Institute, Cambridge, UK.
Nat Genet. 2017 Oct;49(10):1522-1528. doi: 10.1038/ng.3935. Epub 2017 Aug 14.
Chromosome conformation is an important feature of metazoan gene regulation; however, enhancer-promoter contact remodeling during cellular differentiation remains poorly understood. To address this, genome-wide promoter capture Hi-C (CHi-C) was performed during epidermal differentiation. Two classes of enhancer-promoter contacts associated with differentiation-induced genes were identified. The first class ('gained') increased in contact strength during differentiation in concert with enhancer acquisition of the H3K27ac activation mark. The second class ('stable') were pre-established in undifferentiated cells, with enhancers constitutively marked by H3K27ac. The stable class was associated with the canonical conformation regulator cohesin, whereas the gained class was not, implying distinct mechanisms of contact formation and regulation. Analysis of stable enhancers identified a new, essential role for a constitutively expressed, lineage-restricted ETS-family transcription factor, EHF, in epidermal differentiation. Furthermore, neither class of contacts was observed in pluripotent cells, suggesting that lineage-specific chromatin structure is established in tissue progenitor cells and is further remodeled in terminal differentiation.
染色体构象是后生动物基因调控的一个重要特征;然而,细胞分化过程中增强子-启动子接触的重塑仍知之甚少。为了解决这个问题,在表皮分化过程中进行了全基因组启动子捕获Hi-C(CHi-C)实验。鉴定出了两类与分化诱导基因相关的增强子-启动子接触。第一类(“获得性”)在分化过程中接触强度增加,同时增强子获得H3K27ac激活标记。第二类(“稳定性”)在未分化细胞中预先建立,增强子由H3K27ac持续标记。稳定性类别与典型的构象调节因子黏连蛋白相关,而获得性类别则不然,这意味着接触形成和调控的机制不同。对稳定性增强子的分析确定了一种组成型表达、谱系受限的ETS家族转录因子EHF在表皮分化中的新的重要作用。此外,在多能细胞中未观察到任何一类接触,这表明谱系特异性染色质结构在组织祖细胞中建立,并在终末分化中进一步重塑。