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恒河猴免疫细胞DNA甲基化的遗传结构

Genetic Architecture of Immune Cell DNA Methylation in the Rhesus Macaque.

作者信息

Costa Christina E, Watowich Marina M, Goldman Elisabeth A, Sterner Kirstin N, Negron-Del Valle Josue E, Phillips Daniel, Platt Michael L, Montague Michael J, Brent Lauren J N, Higham James P, Snyder-Mackler Noah, Lea Amanda J

机构信息

Department of Anthropology, New York University, New York, New York, USA.

New York Consortium in Evolutionary Primatology, New York, New York, USA.

出版信息

Mol Ecol. 2025 Aug;34(15):e17576. doi: 10.1111/mec.17576. Epub 2024 Nov 24.

Abstract

Genetic variation that impacts gene regulation, rather than protein function, can have strong effects on trait variation both within and between species. Epigenetic mechanisms, such as DNA methylation, are often an important intermediate link between genotype and phenotype, yet genetic effects on DNA methylation remain understudied in natural populations. To address this gap, we used reduced representation bisulfite sequencing to measure DNA methylation levels at 555,856 CpGs in peripheral whole blood of 573 samples collected from free-ranging rhesus macaques (Macaca mulatta) living on the island of Cayo Santiago, Puerto Rico. We used allele-specific methods to map cis-methylation quantitative trait loci (meQTL) and tested for effects of 243,389 single nucleotide polymorphisms (SNPs) on local DNA methylation levels. Of 776,092 tested SNP-CpG pairs, we identified 516,213 meQTL, with 69.12% of CpGs having at least one meQTL (FDR < 5%). On average, meQTL explained 21.2% of nearby methylation variance, significantly more than age or sex. meQTL were enriched in genomic compartments where methylation is likely to impact gene expression, for example, promoters, enhancers and binding sites for methylation-sensitive transcription factors. In support, using mRNA-seq data from 172 samples, we confirmed 332 meQTL as whole blood cis-expression QTL (eQTL) in the population, and found meQTL-eQTL genes were enriched for immune response functions, like antigen presentation and inflammation. Overall, our study takes an important step towards understanding the genetic architecture of DNA methylation in natural populations, and more generally points to the biological mechanisms driving phenotypic variation in our close relatives.

摘要

影响基因调控而非蛋白质功能的遗传变异,可能对物种内部和物种之间的性状变异产生强烈影响。表观遗传机制,如DNA甲基化,通常是基因型和表型之间的重要中间环节,但在自然种群中,遗传对DNA甲基化的影响仍未得到充分研究。为了填补这一空白,我们使用简化代表性亚硫酸氢盐测序法,测量了从波多黎各圣地亚哥岛自由放养的恒河猴(猕猴)采集的573个样本外周全血中555,856个CpG位点的DNA甲基化水平。我们使用等位基因特异性方法来定位顺式甲基化定量性状位点(meQTL),并测试243,389个单核苷酸多态性(SNP)对局部DNA甲基化水平的影响。在776,092对测试的SNP-CpG对中,我们鉴定出516,213个meQTL,其中69.12%的CpG位点至少有一个meQTL(FDR < 5%)。平均而言,meQTL解释了附近甲基化变异的21.2%,显著超过年龄或性别。meQTL在甲基化可能影响基因表达的基因组区域中富集,例如启动子、增强子和甲基化敏感转录因子的结合位点。作为支持,我们使用来自172个样本的mRNA-seq数据,在该种群中确认了332个meQTL为全血顺式表达定量性状位点(eQTL),并发现meQTL-eQTL基因在免疫反应功能方面富集,如抗原呈递和炎症。总体而言,我们的研究朝着理解自然种群中DNA甲基化的遗传结构迈出了重要一步,更广泛地指出了驱动我们近亲表型变异的生物学机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb26/12269644/6322d565bf31/nihms-2092291-f0001.jpg

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