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一个基因启动子内的长多态 GT 微卫星介导了金鱼种间杂交中一个 CpG 岛的非印迹等位基因特异性 DNA 甲基化。

A Long Polymorphic GT Microsatellite within a Gene Promoter Mediates Non-Imprinted Allele-Specific DNA Methylation of a CpG Island in a Goldfish Inter-Strain Hybrid.

机构信息

Zhejiang Institute of Freshwater Fisheries, Huzhou 313001, China.

College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Int J Mol Sci. 2019 Aug 12;20(16):3923. doi: 10.3390/ijms20163923.

Abstract

It is now widely accepted that allele-specific DNA methylation (ASM) commonly occurs at non-imprinted loci. Most of the non-imprinted ASM regions observed both within and outside of the CpG island show a strong correlation with DNA polymorphisms. However, what polymorphic cis-acting elements mediate non-imprinted ASM of the CpG island remains unclear. In this study, we investigated the impact of polymorphic GT microsatellites within the gene promoter on non-imprinted ASM of the local CpG island in goldfish. We generated various goldfish heterozygotes, in which the length of GT microsatellites or some non-repetitive sequences in the promoter of alleles was different. By examining the methylation status of the downstream CpG island in these heterozygotes, we found that polymorphisms of a long GT microsatellite can lead to the ASM of the downstream CpG island during oogenesis and embryogenesis, polymorphisms of short GT microsatellites and non-repetitive sequences in the promoter exhibited no significant effect on the methylation of the CpG island. We also observed that the ASM of the CpG island was associated with allele-specific expression in heterozygous embryos. These results suggest that a long polymorphic GT microsatellite within a gene promoter mediates non-imprinted ASM of the local CpG island in a goldfish inter-strain hybrid.

摘要

现在普遍认为,等位基因特异性 DNA 甲基化(ASM)通常发生在非印迹基因座上。在 CpG 岛内外观察到的大多数非印迹 ASM 区域与 DNA 多态性呈强相关性。然而,是什么多态顺式作用元件介导 CpG 岛的非印迹 ASM 仍不清楚。在这项研究中,我们研究了金鱼基因启动子内多态性 GT 微卫星对局部 CpG 岛非印迹 ASM 的影响。我们生成了各种金鱼杂合子,其中等位基因启动子中的 GT 微卫星或一些非重复序列的长度不同。通过检查这些杂合子中下游 CpG 岛的甲基化状态,我们发现长 GT 微卫星的多态性可以导致卵母细胞发生和胚胎发生过程中下游 CpG 岛的 ASM,短 GT 微卫星和启动子中的非重复序列的多态性对 CpG 岛的甲基化没有显著影响。我们还观察到 CpG 岛的 ASM 与杂合子胚胎中的等位基因特异性表达有关。这些结果表明,基因启动子内的长多态性 GT 微卫星介导了金鱼种间杂种中局部 CpG 岛的非印迹 ASM。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3aab/6721770/a3f69819ee69/ijms-20-03923-g001.jpg

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