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青少年期的 DNA 甲基化位点受青春期发育时间的影响:一项双胞胎研究。

DNA methylation sites in early adulthood characterised by pubertal timing and development: a twin study.

机构信息

Department of Life Sciences and Systems Biology, University of Turin, 10100, Turin, Italy.

Cancer Genomics Lab, Fondazione Edo ed Elvo Tempia, 13900, Biella, Italy.

出版信息

Clin Epigenetics. 2023 Nov 10;15(1):181. doi: 10.1186/s13148-023-01594-7.

Abstract

BACKGROUND

Puberty is a highly heritable and variable trait, with environmental factors having a role in its eventual timing and development. Early and late pubertal onset are both associated with various diseases developing later in life, and epigenetic characterisation of pubertal timing and development could lead to important insights. Blood DNA methylation, reacting to both genotype and environment, has been associated with puberty; however, such studies are relatively scarce. We investigated peripheral blood DNA methylation profiles (using Illumina 450 K and EPIC platforms) of 1539 young adult Finnish twins associated with pubertal development scale (PDS) at ages 12 and 14 as well as pubertal age (PA).

RESULTS

Fixed effect meta-analysis of the two platforms on 347,521 CpGs in common identified 58 CpG sites associated (p < 1 × 10) with either PDS or PA. All four CpGs associated with PA and 45 CpGs associated with PDS were sex-specific. Thirteen CpGs had a high heritability (h2: 0.51-0.98), while one CpG site (mapped to GET4) had a high shared environmental component accounting for 68% of the overall variance in methylation at the site. Utilising twin discordance analysis, we found 6 CpG sites (5 associated with PDS and 1 with PA) that had an environmentally driven association with puberty. Furthermore, genes with PDS- or PA-associated CpGs were consistently linked to various developmental processes and diseases such as breast, prostate and ovarian cancer, while methylation quantitative trait loci of associated CpG sites were enriched in immune pathways developing during puberty.

CONCLUSIONS

By identifying puberty-associated DNA methylation sites and examining the effects of sex, environment and genetics, we shed light on the intricate interplay between environment and genetics in the context of puberty. Through our comprehensive analysis, we not only deepen the understanding of the significance of both genetic and environmental factors in the complex processes of puberty and its timing, but also gain insights into potential links with disease risks.

摘要

背景

青春期是一个高度遗传和可变的特征,环境因素在其最终时间和发育中起作用。青春期的早期和晚期开始都与生命后期各种疾病的发展有关,青春期时间和发育的表观遗传特征可能会带来重要的见解。血液 DNA 甲基化反应于基因型和环境,与青春期有关;然而,此类研究相对较少。我们研究了与青春期发育量表(PDS)相关的 1539 名芬兰年轻成年双胞胎的外周血 DNA 甲基化谱(使用 Illumina 450K 和 EPIC 平台),年龄为 12 岁和 14 岁以及青春期年龄(PA)。

结果

在 347,521 个共同 CpG 上,对两个平台进行固定效应荟萃分析,确定了 58 个与 PDS 或 PA 相关的 CpG 位点(p < 1 × 10)。与 PA 相关的所有四个 CpG 和与 PDS 相关的 45 个 CpG 都是性别特异性的。13 个 CpG 具有较高的遗传率(h2:0.51-0.98),而一个与 GET4 映射的 CpG 位点具有较高的共享环境成分,占该位点甲基化总方差的 68%。利用双胞胎不一致分析,我们发现 6 个 CpG 位点(5 个与 PDS 相关,1 个与 PA 相关)与青春期具有环境驱动的关联。此外,与 PDS 或 PA 相关的 CpG 相关基因与各种发育过程和疾病(如乳腺癌、前列腺癌和卵巢癌)一致相关,而相关 CpG 位点的甲基化数量性状位点在青春期发育期间的免疫途径中富集。

结论

通过鉴定与青春期相关的 DNA 甲基化位点,并研究性别、环境和遗传的影响,我们揭示了环境和遗传在青春期背景下相互作用的复杂性。通过我们的综合分析,我们不仅加深了对遗传和环境因素在青春期及其时间复杂过程中的重要性的理解,还深入了解了与疾病风险的潜在联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7abd/10638786/e6e5566e22a8/13148_2023_1594_Fig1_HTML.jpg

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