首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Zinc Finger Protein ZFP57 Requires Its Co-factor to Recruit DNA Methyltransferases and Maintains DNA Methylation Imprint in Embryonic Stem Cells via Its Transcriptional Repression Domain
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Zinc Finger Protein ZFP57 Requires Its Co-factor to Recruit DNA Methyltransferases and Maintains DNA Methylation Imprint in Embryonic Stem Cells via Its Transcriptional Repression Domain

机译:锌指蛋白ZFP57需要其辅因子来招募DNA甲基转移酶并通过其转录抑制域维持胚胎干细胞中的DNA甲基化印记。

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摘要

Previously, we discovered that ZFP57 is a maternal-zygotic effect gene, and it maintains DNA methylation genomic imprint at multiple imprinted regions in mouse embryos. Despite these findings, it remains elusive how DNA methyltransferases are targeted to the imprinting control regions to initiate and maintain DNA methylation imprint. To gain insights into these essential processes in genomic imprinting, we examined how ZFP57 maintains genomic DNA methylation imprint in mouse embryonic stem (ES) cells. Here we demonstrate that the loss of ZFP57 in mouse ES cells led to a complete loss of genomic DNA methylation imprint at multiple imprinted regions, similar to its role in mouse embryos. However, reintroduction of ZFP57 into Zfp57-null ES cells did not result in reacquisition of DNA methylation imprint, suggesting that the memory for genomic imprinting had been lost or altered in Zfp57-null ES cells in culture. Interestingly, ZFP57 and DNA methyltransferases could form complexes in the presence of KAP1/TRIM28/TIF1β when co-expressed in COS cells. We also found that the wild-type exogenous ZFP57 but not the mutant ZFP57 lacking the KRAB box that interacts with its co-factor KAP1/TRIM28/TIF1β could substitute for the endogenous ZFP57 in maintaining the DNA methylation imprint in ES cells. These results suggest that ZFP57 may recruit DNA methyltransferases to its target regions to maintain DNA methylation imprint, and this interaction is likely facilitated by KAP1/TRIM28/TIF1β.
机译:以前,我们发现ZFP57是一个母体合子效应基因,并且在小鼠胚胎的多个印迹区域维持DNA甲基化基因组印迹。尽管有这些发现,但如何将DNA甲基转移酶靶向于印迹控制区域以启动和维持DNA甲基化印迹仍然是难以捉摸的。为了深入了解基因组印迹中的这些基本过程,我们研究了ZFP57如何在小鼠胚胎干(ES)细胞中维持基因组DNA甲基化印迹。在这里,我们证明了在小鼠胚胎干细胞中ZFP57的缺失导致基因组DNA甲基化印迹在多个印迹区域的完全丧失,类似于其在小鼠胚胎中的作用。但是,将ZFP57重新引入Zfp57无ES细胞中不会导致DNA甲基化印迹的重新获得,这表明在培养的Zfp57无ES细胞中基因组印迹的记忆已经丢失或改变。有趣的是,当在COS细胞中共表达时,ZFP57和DNA甲基转移酶可以在KAP1 / TRIM28 /TIF1β存在的情况下形成复合物。我们还发现,野生型外源ZFP57而不是缺少与其辅助因子KAP1 / TRIM28 /TIF1β相互作用的KRAB框的突变体ZFP57可以替代内源ZFP57来维持ES细胞中的DNA甲基化印记。这些结果表明,ZFP57可能募集DNA甲基转移酶至其靶区域以维持DNA甲基化印记,而KAP1 / TRIM28 /TIF1β可能促进了这种相互作用。

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