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哺乳动物性状相关的 DNA 甲基化网络。

DNA methylation networks underlying mammalian traits.

机构信息

Department of Human Genetics, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA, USA.

Altos Labs, San Diego, CA, USA.

出版信息

Science. 2023 Aug 11;381(6658):eabq5693. doi: 10.1126/science.abq5693.

Abstract

Using DNA methylation profiles ( = 15,456) from 348 mammalian species, we constructed phyloepigenetic trees that bear marked similarities to traditional phylogenetic ones. Using unsupervised clustering across all samples, we identified 55 distinct cytosine modules, of which 30 are related to traits such as maximum life span, adult weight, age, sex, and human mortality risk. Maximum life span is associated with methylation levels in subclass homeobox genes and developmental processes and is potentially regulated by pluripotency transcription factors. The methylation state of some modules responds to perturbations such as caloric restriction, ablation of growth hormone receptors, consumption of high-fat diets, and expression of Yamanaka factors. This study reveals an intertwined evolution of the genome and epigenome that mediates the biological characteristics and traits of different mammalian species.

摘要

利用来自 348 种哺乳动物的 DNA 甲基化谱(=15456),我们构建了与传统系统发育树有明显相似之处的系统发生表观遗传树。通过对所有样本进行无监督聚类,我们鉴定出 55 个不同的胞嘧啶模块,其中 30 个与最大寿命、成年体重、年龄、性别和人类死亡风险等特征有关。最大寿命与同源盒基因和发育过程的亚类的甲基化水平有关,可能受到多能转录因子的调控。一些模块的甲基化状态对热量限制、生长激素受体缺失、高脂肪饮食摄入和 Yamanaka 因子表达等干扰有反应。本研究揭示了基因组和表观基因组的交织进化,介导了不同哺乳动物物种的生物学特征和性状。

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