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印记中心如何运作。

How imprinting centres work.

作者信息

Lewis A, Reik W

机构信息

Laboratory of Developmental Genetics and Imprinting, The Babraham Institute, Cambridge, UK.

出版信息

Cytogenet Genome Res. 2006;113(1-4):81-9. doi: 10.1159/000090818.

Abstract

Imprinted genes tend to be clustered in the genome. Most of these clusters have been found to be under the control of discrete DNA elements called imprinting centres (ICs) which are normally differentially methylated in the germline. ICs can regulate imprinted expression and epigenetic marks at many genes in the region, even those which lie several megabases away. Some of the molecular and cellular mechanisms by which ICs control other genes and regulatory regions in the cluster are becoming clear. One involves the insulation of genes on one side of the IC from enhancers on the other, mediated by the insulator protein CTCF and higher-order chromatin interactions. Another mechanism may involve non-coding RNAs that originate from the IC, targeting histone modifications to the surrounding genes. Given that several imprinting clusters contain CTCF dependent insulators and/or non-coding RNAs, it is likely that one or both of these two mechanisms regulate imprinting at many loci. Both mechanisms involve a variety of epigenetic marks including DNA methylation and histone modifications but the hierarchy of and interactions between these modifications are not yet understood. The challenge now is to establish a chain of developmental events beginning with differential methylation of an IC in the germline and ending with imprinting of many genes, often in a lineage dependent manner.

摘要

印记基因倾向于在基因组中聚集成簇。已发现这些簇中的大多数受称为印记中心(ICs)的离散DNA元件控制,这些元件在生殖系中通常存在差异甲基化。印记中心可以调节该区域内许多基因的印记表达和表观遗传标记,即使是那些位于数百万碱基对之外的基因。印记中心控制簇中其他基因和调控区域的一些分子和细胞机制正逐渐明晰。一种机制涉及由绝缘子蛋白CTCF和高阶染色质相互作用介导的,将印记中心一侧的基因与另一侧的增强子隔离开来。另一种机制可能涉及源自印记中心的非编码RNA,将组蛋白修饰靶向周围基因。鉴于几个印记簇包含依赖CTCF的绝缘子和/或非编码RNA,这两种机制中的一种或两种可能在许多位点调节印记。这两种机制都涉及多种表观遗传标记,包括DNA甲基化和组蛋白修饰,但这些修饰之间的层次结构和相互作用尚不清楚。现在的挑战是建立一系列发育事件,从生殖系中印记中心的差异甲基化开始,到许多基因的印记结束,通常是以谱系依赖的方式。

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