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再生的表观遗传学基础:MRL/MpJ 小鼠基因组 DNA 甲基化谱分析。

Epigenetic basis of regeneration: analysis of genomic DNA methylation profiles in the MRL/MpJ mouse.

机构信息

1Department of Microbiology, Gdańsk University of Technology, Gdańsk, Poland.

出版信息

DNA Res. 2013 Dec;20(6):605-21. doi: 10.1093/dnares/dst034. Epub 2013 Aug 8.

DOI:10.1093/dnares/dst034
PMID:23929942
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3859327/
Abstract

Epigenetic regulation plays essential role in cell differentiation and dedifferentiation, which are the intrinsic processes involved in regeneration. To investigate the epigenetic basis of regeneration capacity, we choose DNA methylation as one of the most important epigenetic mechanisms and the MRL/MpJ mouse as a model of mammalian regeneration known to exhibit enhanced regeneration response in different organs. We report the comparative analysis of genomic DNA methylation profiles of the MRL/MpJ and the control C57BL/6J mouse. Methylated DNA immunoprecipitation followed by microarray analysis using the Nimblegen '3 × 720 K CpG Island Plus RefSeq Promoter' platform was applied in order to carry out genome-wide DNA methylation profiling covering 20 404 promoter regions. We identified hundreds of hypo- and hypermethylated genes and CpG islands in the heart, liver, and spleen, and 37 of them in the three tissues. Decreased inter-tissue diversification and the shift of DNA methylation balance upstream the genes distinguish the genomic methylation patterns of the MRL/MpJ mouse from the C57BL/6J. Homeobox genes and a number of other genes involved in embryonic morphogenesis are significantly overrepresented among the genes hypomethylated in the MRL/MpJ mouse. These findings indicate that epigenetic patterning might be a likely molecular basis of regeneration capability in the MRL/MpJ mouse.

摘要

表观遗传调控在细胞分化和去分化中发挥着重要作用,而分化和去分化是再生过程中的固有过程。为了研究再生能力的表观遗传基础,我们选择 DNA 甲基化为最重要的表观遗传机制之一,并选择 MRL/MpJ 小鼠作为哺乳动物再生的模型,已知该模型在不同器官中表现出增强的再生反应。我们报告了 MRL/MpJ 和对照 C57BL/6J 小鼠基因组 DNA 甲基化谱的比较分析。采用甲基化 DNA 免疫沉淀,然后使用 Nimblegen '3 × 720 K CpG 岛加 RefSeq 启动子' 平台进行微阵列分析,以进行覆盖 20404 个启动子区域的全基因组 DNA 甲基化谱分析。我们在心脏、肝脏和脾脏中鉴定出数百个低甲基化和高甲基化基因和 CpG 岛,在这三个组织中有 37 个。基因上游 DNA 甲基化平衡的变化和组织间多样性的降低将 MRL/MpJ 小鼠的基因组甲基化模式与 C57BL/6J 区分开来。在 MRL/MpJ 小鼠中低甲基化的基因中,同源盒基因和许多其他参与胚胎形态发生的基因显著富集。这些发现表明,表观遗传模式可能是 MRL/MpJ 小鼠再生能力的分子基础之一。

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