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首页> 外文期刊>Clinical epigenetics. >Kaiso mediates human ICR1 methylation maintenance and H19 transcriptional fine regulation
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Kaiso mediates human ICR1 methylation maintenance and H19 transcriptional fine regulation

机译:Kaiso介导人类ICR1甲基化维持和H19转录精细调控

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BackgroundGenomic imprinting evolved in a common ancestor to marsupials and eutherian mammals and ensured the transcription of developmentally important genes from defined parental alleles. The regulation of imprinted genes is often mediated by differentially methylated imprinting control regions (ICRs) that are bound by different proteins in an allele-specific manner, thus forming unique chromatin loops regulating enhancer-promoter interactions. Factors that maintain the allele-specific methylation therefore are essential for the proper transcriptional regulation of imprinted genes. Binding of CCCTC-binding factor (CTCF) to the IGF2/H19-ICR1 is thought to be the key regulator of maternal ICR1 function. Disturbances of the allele-specific CTCF binding are causative for imprinting disorders like the Silver-Russell syndrome (SRS) or the Beckwith-Wiedemann syndrome (BWS), the latter one being associated with a dramatically increased risk to develop nephroblastomas. MethodsKaiso binding to the human ICR1 was detected and analyzed by chromatin immunoprecipitation (ChIP) and electrophoretic mobility shift assays (EMSA). The role of Kaiso-ICR1 binding on DNA methylation was tested by lentiviral Kaiso knockdown and CRISPR/Cas9 mediated editing of a Kaiso binding site. ResultsWe find that another protein, Kaiso (ZBTB33), characterized as binding to methylated CpG repeats as well as to unmethylated consensus sequences, specifically binds to the human ICR1 and its unmethylated Kaiso binding site (KBS) within the ICR1. Depletion of Kaiso transcription as well as deletion of the ICR1-KBS by CRISPR/Cas9 genome editing results in reduced methylation of the paternal ICR1. Additionally, Kaiso affects transcription of the lncRNA H19 and specifies a role for ICR1 in the transcriptional regulation of this imprinted gene. ConclusionsKaiso binding to unmethylated KBS in the human ICR1 is necessary for ICR1 methylation maintenance and affects transcription rates of the lncRNA H19 .
机译:背景技术基因组印记在有祖先的动物中进化为有袋动物和以太坊哺乳动物,并确保从重要的父母等位基因中转录出重要的发育基因。印迹基因的调控通常由差异甲基化的印迹控制区域(ICR)介导,该区域被不同蛋白质以等位基因特异性方式结合,从而形成独特的染色质环,调节增强子-启动子的相互作用。因此,维持等位基因特异性甲基化的因素对于印迹基因的正确转录调控至关重要。 CCCTC结合因子(CTCF)与IGF2 / H19-ICR1的结合被认为是母体ICR1功能的关键调节因子。等位基因特异的CTCF结合障碍是导致诸如银-罗素综合症(SRS)或贝克威斯-韦德曼综合症(BWS)等印记障碍的病因,后者与发展成肾母细胞瘤的风险显着相关。方法通过染色质免疫沉淀(ChIP)和电泳迁移率变动分析(EMSA)检测并分析Kaiso与人ICR1的结合。通过慢病毒Kaiso敲低和CRISPR / Cas9介导的Kaiso结合位点的编辑测试了Kaiso-ICR1结合在DNA甲基化上的作用。结果我们发现另一种蛋白质Kaiso(ZBTB33),其特征是与甲基化的CpG重复序列以及未甲基化的共有序列结合,特异性结合至人ICR1及其在ICR1中的未甲基化的Kaiso结合位点(KBS)。 CRISPR / Cas9基因组编辑使Kaiso转录耗竭以及ICR1-KBS缺失,导致父本ICR1的甲基化降低。另外,Kaiso影响了lncRNA H19的转录,并规定了ICR1在该印迹基因的转录调控中的作用。结论Kaiso结合人ICR1中未甲基化的KBS对于ICR1甲基化的维持是必需的,并影响lncRNA H19的转录速率。

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