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CTCF 介导的多能细胞功能染色质互作组

CTCF-mediated functional chromatin interactome in pluripotent cells.

机构信息

Genome Institute of Singapore, Singapore.

出版信息

Nat Genet. 2011 Jun 19;43(7):630-8. doi: 10.1038/ng.857.

Abstract

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.

摘要

哺乳动物基因组被视为组织时空基因调控的功能单位。CTCF 是最具特征性的绝缘子结合蛋白,被认为是关键的基因组组织者。然而,人们对 CTCF 相关的更高阶染色质结构在全局范围内的了解甚少。在这里,我们应用染色质相互作用分析通过配对末端标签 (ChIA-PET) 测序来阐明多能细胞中的 CTCF-染色质相互作用组。通过这项分析,我们以高重复性和精度识别出 1480 个顺式和 336 个反式相互作用位点。将这些染色质相互作用位点与其潜在的表观遗传状态、启动子活性、增强子结合和核层占据联系起来,我们揭示了五个不同的染色质域,这些染色质域暗示了 CTCF 在染色质组织和转录控制中的功能的潜在新模型。具体来说,CTCF 相互作用划定了染色质-核膜附着的边界,并通过启动子和调节元件之间的广泛相互作用影响适当的基因表达。这种高度复杂的核组织为控制基因组可塑性和功能的统一原则提供了深入的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dac5/3436933/11be5abaafe5/nihms297076f1.jpg

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