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A permissive chromatin state regulated by ZFP281-AFF3 in controlling the imprinted Meg3 polycistron

机译:由ZFP281-AFF3调节的许可染色质状态可控制印迹的Meg3多顺反子

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摘要

Genomic imprinting is an epigenetic regulation that leads to gene expression in a parent-of-origin specific manner. AFF3, the central component of the Super Elongation Complex-like 3 (SEC-L3), is enriched at both the intergenic-differentially methylated region (IG-DMR) and the Meg3 enhancer within the imprinted Dlk1-Dio3 locus to regulate the allele-specific gene expression in this locus. The localization of AFF3 to IG-DMR requires ZFP57. However, how AFF3 functions at the Meg3 enhancer in maintaining allele-specific gene expression remains unclear. Here, we demonstrate that AFF3 is associated with the Krüppel-like zinc finger protein ZFP281 in mouse embryonic stem (ES) cells. ZFP281 recruits AFF3 to the Meg3 enhancer within the imprinted Dlk1-Dio3 locus, thus regulating the allele-specific expression of the Meg3 polycistron. Our genome-wide analyses further identify ZFP281 as a critical factor generally associating with AFF3 at enhancers and functioning together with AFF3 in regulating the expression of a subset of genes. Our study suggests that different zinc finger proteins can recruit AFF3 to different regulatory elements and differentially regulate the function of AFF3 in a context-dependent manner.
机译:基因组印记是一种表观遗传学调控,可导致其以亲本特异性的方式表达基因。 AFF3是Super Elongation Complex-like 3(SEC-L3)的核心组成部分,在印记的Dlk1-Dio3基因座内的基因间差异甲基化区域(IG-DMR)和Meg3增强子处均富集,以调节等位基因该基因座中的特定基因表达。 AFF3到IG-DMR的本地化需要ZFP57。但是,AFF3如何在维持等位基因特异性基因表达的Meg3增强子上起作用。在这里,我们证明AFF3与小鼠胚胎干(ES)细胞中的Krüppel样锌指蛋白ZFP281相关。 ZFP281将AFF3募集到印迹Dlk1-Dio3基因座内的Meg3增强子,从而调节Meg3多顺反子的等位基因特异性表达。我们的全基因组分析进一步确定了ZFP281是通常与增强子上的AFF3相关联并与AFF3一起起作用调节基因子集表达的关键因素。我们的研究表明,不同的锌指蛋白可以将AFF3募集到不同的调节元件,并以上下文相关的方式差异性调节AFF3的功能。

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