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An alternative CTCF isoform antagonizes canonical CTCF occupancy and changes chromatin architecture to promote apoptosis

机译:替代的CTCF同种型拮抗典型CTCF占用,改变染色质架构以促进细胞凋亡

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摘要

CTCF plays key roles in gene regulation, chromatin insulation, imprinting, X chromosome inactivation and organizing the higher-order chromatin architecture of mammalian genomes. Previous studies have mainly focused on the roles of the canonical CTCF isoform. Here, we explore the functions of an alternatively spliced human CTCF isoform in which exons 3 and 4 are skipped, producing a shorter isoform (CTCF-s). Functionally, we find that CTCF-s competes with the genome binding of canonical CTCF and binds a similar DNA sequence. CTCF-s binding disrupts CTCF/cohesin binding, alters CTCF-mediated chromatin looping and promotes the activation of IFI6 that leads to apoptosis. This effect is caused by an abnormal long-range interaction at the IFI6 enhancer and promoter. Taken together, this study reveals a non-canonical function for CTCF-s that antagonizes the genomic binding of canonical CTCF and cohesin, and that modulates chromatin looping and causes apoptosis by stimulating IFI6 expression.
机译:CTCF在基因调节,染色质绝缘,印迹,X染色体灭活和组织哺乳动物基因组的高阶染色质结构中起着关键作用。以前的研究主要集中在规范CTCF同种型的作用。在这里,我们探讨了可替代的剪接人CTCF同种型的功能,其中跳过外显子3和4,产生较短的同种型(CTCF-S)。在功能上,我们发现CTCF-S与规范CTCF的基因组结合竞争并结合类似的DNA序列。 CTCF-S结合破坏CTCF /休肽结合,改变CTCF介导的染色质循环,促进IFI6的激活,导致细胞凋亡。这种效果是由IFI6增强剂和启动子的异常的远程相互作用引起的。该研究占据了CTCF-S的非规范功能,拮抗典型CTCF和休蛋白的基因组结合,并调节染色质循环并通过刺激IFI6表达引起细胞凋亡。

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