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H19 差异甲基化区域(DMD)缺失等位基因的发育概况揭示了 DMD 在调控印记 H19/Igf2 基因座的等位基因表达和 DNA 甲基化中的多种作用。

Developmental profile of H19 differentially methylated domain (DMD) deletion alleles reveals multiple roles of the DMD in regulating allelic expression and DNA methylation at the imprinted H19/Igf2 locus.

作者信息

Thorvaldsen Joanne L, Fedoriw Andrew M, Nguyen Son, Bartolomei Marisa S

机构信息

Department of Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.

出版信息

Mol Cell Biol. 2006 Feb;26(4):1245-58. doi: 10.1128/MCB.26.4.1245-1258.2006.

Abstract

The differentially methylated domain (DMD) of the mouse H19 gene is a methylation-sensitive insulator that blocks access of the Igf2 gene to shared enhancers on the maternal allele and inactivates H19 expression on the methylated paternal allele. By analyzing H19 DMD deletion alleles H19DeltaDMD and H19Delta3.8kb-5'H19 in pre- and postimplantation embryos, we show that the DMD exhibits positive transcriptional activity and is required for H19 expression in blastocysts and full activation of H19 during subsequent development. We also show that the DMD is required to establish Igf2 imprinting by blocking access to shared enhancers when Igf2 monoallelic expression is initiated in postimplantation embryos and that the single remaining CTCF site of the H19DeltaDMD allele is unable to provide this function. Furthermore, our data demonstrate that sequence outside of the DMD can attract some paternal-allele-specific CpG methylation 5' of H19 in preimplantation embryos, although this methylation is not maintained during postimplantation in the absence of the DMD. Finally, we report a conditional allele floxing the 1.6-kb sequence deleted from the H19DeltaDMD allele and demonstrate that the DMD is required to maintain repression of the maternal Igf2 allele and the full activity of the paternal Igf2 allele in neonatal liver.

摘要

小鼠H19基因的差异甲基化区域(DMD)是一种甲基化敏感的绝缘子,它可阻止Igf2基因在母本等位基因上接触共享增强子,并使甲基化的父本等位基因上的H19表达失活。通过分析植入前和植入后胚胎中的H19 DMD缺失等位基因H19DeltaDMD和H19Delta3.8kb-5'H19,我们发现DMD具有正向转录活性,是胚泡中H19表达以及后续发育过程中H19完全激活所必需的。我们还发现,当植入后胚胎中开始Igf2单等位基因表达时,DMD通过阻止接触共享增强子来建立Igf2印记,并且H19DeltaDMD等位基因中仅存的一个CTCF位点无法提供此功能。此外,我们的数据表明,DMD之外的序列可在植入前胚胎中吸引H19 5'端一些父本等位基因特异性的CpG甲基化,尽管在植入后若无DMD这种甲基化不会维持。最后,我们报告了一个条件等位基因,它可使从H19DeltaDMD等位基因中缺失的1.6 kb序列发生loxP重组,并证明DMD是维持新生肝脏中母本Igf2等位基因的抑制和父本Igf2等位基因的完全活性所必需的。

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