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H19差异甲基化区域的发育调控功能。

Developmentally regulated functions of the H19 differentially methylated domain.

作者信息

Vernucci Maria, Cerrato Flavia, Pedone Paolo V, Dandolo Luisa, Bruni Carmelo B, Riccio Andrea

机构信息

Dipartimento di Scienze Ambientali, Seconda Università di Napoli, Caserta, Naples, Italy.

出版信息

Hum Mol Genet. 2004 Feb 1;13(3):353-61. doi: 10.1093/hmg/ddh028. Epub 2003 Dec 17.

Abstract

Igf2 and H19 are physically linked imprinted genes. In embryonic liver, their reciprocal expression (paternal for Igf2 and maternal for H19) is controlled by a paternally methylated region (H19 DMD) located 5' of H19. This region contains a methylation-sensitive insulator that prevents the Igf2 promoters being activated by downstream enhancers on the maternal chromosome. In adult liver, Igf2 is normally not expressed but is reactivated upon tumour formation. By analysing three deletions of the H19 locus, we investigated the mechanism regulating the imprinted expression of the Igf2 gene in the course of liver tumourigenesis. We observed that the role of the H19 DMD in the control of Igf2 expression changes during tumourigenesis. The H19 DMD is required on the paternal chromosome for Igf2 activation in the early stages while its maternal allele is necessary for maintaining Igf2 imprinting only in the late stages. A positive regulatory function of the paternal H19 DMD is also evident in normal neonatal liver, but its relevance for Igf2 expression becomes higher in the second post-natal week. Our results support a model in which both methylated and non-methylated parental copies of the H19 DMD have active roles in the regulation of Igf2 expression in the liver and these activities are under developmental control.

摘要

Igf2和H19是物理上相连的印记基因。在胚胎肝脏中,它们的反向表达(Igf2为父本表达,H19为母本表达)由位于H19 5'端的父本甲基化区域(H19 DMD)控制。该区域包含一个甲基化敏感绝缘子,可阻止Igf2启动子被母本染色体上的下游增强子激活。在成年肝脏中,Igf2通常不表达,但在肿瘤形成时会重新激活。通过分析H19基因座的三个缺失,我们研究了肝脏肿瘤发生过程中调节Igf2基因印记表达的机制。我们观察到,H19 DMD在控制Igf2表达中的作用在肿瘤发生过程中发生了变化。在早期阶段,父本染色体上的H19 DMD是Igf2激活所必需的,而其母本等位基因仅在晚期阶段才是维持Igf2印记所必需的。父本H19 DMD的正向调节功能在正常新生肝脏中也很明显,但其与Igf2表达的相关性在出生后第二周变得更高。我们的结果支持一种模型,其中H19 DMD的甲基化和非甲基化亲本拷贝在肝脏中Igf2表达的调节中都发挥积极作用,并且这些活动受发育控制。

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