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Human and mouse ZFP57 proteins are functionally interchangeable in maintaining genomic imprinting at multiple imprinted regions in mouse ES cells

机译:人类和小鼠ZFP57蛋白在功能上可互换可维持小鼠ES细胞中多个印迹区域的基因组印迹

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摘要

Genomic imprinting is a common epigenetic phenomenon in mammals. Dysregulation of genomic imprinting has been implicated in a variety of human diseases. ZFP57 is a master regulator in genomic imprinting. Loss of ZFP57 causes loss of DNA methylation imprint at multiple imprinted regions in mouse embryos, as well as in embryonic stem (ES) cells. Similarly, mutations in human ZFP57 result in hypomethylation at many imprinted regions and are associated with transient neonatal diabetes and other human diseases. Mouse and human Zfp57 genes are located in the same syntenic block. However, mouse and human ZFP57 proteins only display about 50% sequence identity with different number of zinc fingers. It is not clear if they share similar mechanisms in maintaining genomic imprinting. Here we report that mouse and human ZFP57 proteins are functionally interchangeable. Expression of exogenous wild-type human ZFP57 could maintain DNA methylation imprint at three imprinted regions in mouse ES cells in the absence of endogenous mouse ZFP57. However, mutant human ZFP57 proteins containing the mutations found in human patients could not substitute for endogenous mouse ZFP57 in maintaining genomic imprinting in ES cells. Like mouse ZFP57, human ZFP57 and its mutant proteins could bind to mouse KAP1, the universal cofactor for KRAB zinc finger proteins, in mouse ES cells. Thus, we conclude that mouse and human ZFP57 are orthologs despite relatively low sequence identity and mouse ES cell system that we had established before is a valuable system for functional analyses of wild-type and mutant human ZFP57 proteins.
机译:基因组印迹是哺乳动物中常见的表观遗传现象。基因组印迹的失调与多种人类疾病有关。 ZFP57是基因组印迹的主要调节剂。 ZFP57的缺失会导致小鼠胚胎以及胚胎干(ES)细胞中多个印迹区域的DNA甲基化印迹丢失。同样,人ZFP57中的突变会在许多印迹区域导致甲基化不足,并与短暂性新生儿糖尿病和其他人类疾病相关。小鼠和人类Zfp57基因位于相同的同义块中。但是,小鼠和人ZFP57蛋白与不同数量的锌指仅显示约50%的序列同一性。尚不清楚它们是否在维持基因组印迹方面具有相似的机制。在这里,我们报告小鼠和人类ZFP57蛋白在功能上是可互换的。在没有内源小鼠ZFP57的情况下,外源野生型人ZFP57的表达可以在小鼠ES细胞的三个印迹区域维持DNA甲基化印迹。但是,包含在人类患者中发现的突变的突变人类ZFP57蛋白不能替代内源性小鼠ZFP57来维持ES细胞中的基因组印迹。像小鼠ZFP57一样,人ZFP57及其突变蛋白可以与小鼠ES细胞中的KRAB锌指蛋白的通用辅因子小鼠KAP1结合。因此,我们得出结论,尽管序列和身份相对较低,但小鼠和人ZFP57是直系同源物,而我们之前建立的小鼠ES细胞系统是用于野生型和突变型人ZFP57蛋白质功能分析的有价值的系统。

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