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双胞胎研究提供了2321种血浆蛋白的遗传度估计值,并评估了缺失单核苷酸多态性的遗传度。

Twin Study Provides Heritability Estimates for 2321 Plasma Proteins and Assesses Missing SNP Heritability.

作者信息

Drouard Gabin, Hagenbeek Fiona A, Ollikainen Miina, Zheng Zhili, Wang Xiaoling, Ripatti Samuli, Pirinen Matti, Kaprio Jaakko

机构信息

Institute for Molecular Medicine Finland (FIMM), HiLIFE, University of Helsinki, Helsinki 00014, Finland.

Minerva Foundation Institute for Medical Research, Helsinki 00290, Finland.

出版信息

J Proteome Res. 2025 Jun 6;24(6):2689-2697. doi: 10.1021/acs.jproteome.4c00971. Epub 2025 May 27.

Abstract

Assessing how much variability in blood plasma proteins is due to genetic or environmental factors is essential for advancing personalized medicine. While large-scale studies have established SNP-based heritability (SNP-h) estimates for plasma proteins, less is known about the proportion of total genetic effects on protein variability. We applied quantitative genetic twin models to estimate the heritability of 2321 plasma proteins and to assess the proportion of heritability accounted for by SNP-h estimates. Olink proteomics data were generated for 401 twins aged 56-70, including 196 complete same-sex twin pairs. On average, 40% of protein variability was attributable to genetic effects. Twin-based heritability estimates were highly correlated with published SNP-h estimates from the UK Biobank (Spearman coefficient: ρ = 0.80). However, on average, only half of the total heritability was covered by SNP-h, and the other half, representing one-fifth of the total protein phenotypic variability, remains missing.

摘要

评估血浆蛋白的变异性有多少归因于遗传或环境因素,对于推进个性化医疗至关重要。虽然大规模研究已经建立了基于单核苷酸多态性(SNP)的血浆蛋白遗传力(SNP-h)估计值,但对于蛋白质变异性的总遗传效应所占比例,我们了解得较少。我们应用定量遗传双胞胎模型来估计2321种血浆蛋白的遗传力,并评估SNP-h估计值所解释的遗传力比例。我们为401名年龄在56至70岁之间的双胞胎生成了Olink蛋白质组学数据,其中包括196对完整的同性双胞胎。平均而言,40%的蛋白质变异性可归因于遗传效应。基于双胞胎的遗传力估计值与英国生物银行公布的SNP-h估计值高度相关(斯皮尔曼系数:ρ = 0.80)。然而,平均而言,SNP-h仅涵盖了总遗传力的一半,另一半,即占蛋白质表型总变异性五分之一的值,仍然缺失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df05/12150308/efd2dcaae3ed/pr4c00971_0001.jpg

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