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早期生活外显子组调节多态性倒位对 DNA 甲基化的影响。

The early-life exposome modulates the effect of polymorphic inversions on DNA methylation.

机构信息

Barcelona Institute for Global Health (ISGlobal), Barcelona, Spain.

Centro de Investigación Biomédica en Red en Epidemiología y Salud Pública (CIBERESP), Madrid, Spain.

出版信息

Commun Biol. 2022 May 12;5(1):455. doi: 10.1038/s42003-022-03380-2.

Abstract

Polymorphic genomic inversions are chromosomal variants with intrinsic variability that play important roles in evolution, environmental adaptation, and complex traits. We investigated the DNA methylation patterns of three common human inversions, at 8p23.1, 16p11.2, and 17q21.31 in 1,009 blood samples from children from the Human Early Life Exposome (HELIX) project and in 39 prenatal heart tissue samples. We found inversion-state specific methylation patterns within and nearby flanking each inversion region in both datasets. Additionally, numerous inversion-exposure interactions on methylation levels were identified from early-life exposome data comprising 64 exposures. For instance, children homozygous at inv-8p23.1 and higher meat intake were more susceptible to TDH hypermethylation (P = 3.8 × 10); being the inversion, exposure, and gene known risk factors for adult obesity. Inv-8p23.1 associated hypermethylation of GATA4 was also detected across numerous exposures. Our data suggests that the pleiotropic influence of inversions during development and lifetime could be substantially mediated by allele-specific methylation patterns which can be modulated by the exposome.

摘要

多态性基因组倒位是具有内在可变性的染色体变体,在进化、环境适应和复杂特征中发挥重要作用。我们研究了三个常见的人类倒位(8p23.1、16p11.2 和 17q21.31)在人类早期生活外显子组(HELIX)项目的 1009 个儿童血液样本和 39 个产前心脏组织样本中的 DNA 甲基化模式。我们发现,在两个数据集的每个倒位区域及其附近侧翼,都存在倒位状态特异性的甲基化模式。此外,从包含 64 种暴露因素的早期生活外显子组数据中鉴定出许多与甲基化水平相关的倒位-暴露相互作用。例如,inv-8p23.1 纯合且肉类摄入量较高的儿童更容易发生 TDH 过度甲基化(P=3.8×10);inv-8p23.1 是已知的成人肥胖的风险因素,同时也是暴露因素和基因。在许多暴露因素中,还检测到 inv-8p23.1 相关的 GATA4 高甲基化。我们的数据表明,在发育和一生中,倒位的多效性影响可能主要通过等位基因特异性甲基化模式来介导,而外显子组可以调节这些模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36de/9098634/bce7fa34c04f/42003_2022_3380_Fig1_HTML.jpg

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