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人类身高的表观遗传

Epigenetic heredity of human height.

作者信息

Simeone Pasquale, Alberti Saverio

机构信息

Unit of Cancer Pathology, Department of Neuroscience and Imaging and CeSI, University "G. d'Annunzio" Foundation, Chieti Scalo, Italy.

出版信息

Physiol Rep. 2014 Jun 24;2(6). doi: 10.14814/phy2.12047. Print 2014 Jun 1.

Abstract

Genome-wide SNP analyses have identified genomic variants associated with adult human height. However, these only explain a fraction of human height variation, suggesting that significant information might have been systematically missed by SNP sequencing analysis. A candidate for such non-SNP-linked information is DNA methylation. Regulation by DNA methylation requires the presence of CpG islands in the promoter region of candidate genes. Seventy two of 87 (82.8%), height-associated genes were indeed found to contain CpG islands upstream of the transcription start site (USC CpG island searcher; validation: UCSC Genome Browser), which were shown to correlate with gene regulation. Consistent with this, DNA hypermethylation modules were detected in 42 height-associated genes, versus 1.5% of control genes (P = 8.0199e(-17)), as were dynamic methylation changes and gene imprinting. Epigenetic heredity thus appears to be a determinant of adult human height. Major findings in mouse models and in human genetic diseases support this model. Modulation of DNA methylation are candidate to mediate environmental influence on epigenetic traits. This may help to explain progressive height changes over multiple generations, through trans-generational heredity of progressive DNA methylation patterns.

摘要

全基因组单核苷酸多态性(SNP)分析已经确定了与成人身高相关的基因组变异。然而,这些变异仅解释了人类身高变异的一部分,这表明SNP测序分析可能系统性地遗漏了重要信息。这种非SNP连锁信息的一个候选者是DNA甲基化。DNA甲基化调控需要候选基因启动子区域存在CpG岛。在87个与身高相关的基因中,有72个(82.8%)确实在转录起始位点上游发现含有CpG岛(使用加州大学圣克鲁兹分校(UCSC)CpG岛搜索工具;验证:UCSC基因组浏览器),这些CpG岛与基因调控相关。与此一致的是,在42个与身高相关的基因中检测到DNA高甲基化模块,而对照基因中这一比例为1.5%(P = 8.0199×10⁻¹⁷),同时还检测到动态甲基化变化和基因印记。因此,表观遗传似乎是成人身高的一个决定因素。小鼠模型和人类遗传疾病中的主要发现支持这一模型。DNA甲基化的调节可能介导环境对表观遗传性状的影响。这可能有助于解释多代人身高的渐进变化,即通过渐进的DNA甲基化模式的跨代遗传。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48f3/4208652/95a4432df0d0/phy2-2-e12047-g1.jpg

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