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Analysis of predicted loss-of-function variants in UK Biobank identifies variants protective for disease

机译:英国生物库中预测的功能丧失型变体的分析确定了对疾病有保护作用的变体

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摘要

Less than 3% of protein-coding genetic variants are predicted to result in loss of protein function through the introduction of a stop codon, frameshift, or the disruption of an essential splice site; however, such predicted loss-of-function (pLOF) variants provide insight into effector transcript and direction of biological effect. In >400,000 UK Biobank participants, we conduct association analyses of 3759 pLOF variants with six metabolic traits, six cardiometabolic diseases, and twelve additional diseases. We identified 18 new low-frequency or rare (allele frequency < 5%) pLOF variant-phenotype associations. pLOF variants in the gene GPR151 protect against obesity and type 2 diabetes, in the gene IL33 against asthma and allergic disease, and in the gene IFIH1 against hypothyroidism. In the gene PDE3B, pLOF variants associate with elevated height, improved body fat distribution and protection from coronary artery disease. Our findings prioritize genes for which pharmacologic mimics of pLOF variants may lower risk for disease.
机译:预计不到3%的蛋白质编码遗传变异会通过引入终止密码子,移码或破坏必要的剪接位点而导致蛋白质功能丧失;但是,这种预测的功能丧失(pLOF)变体提供了对效应子转录本和生物学效应方向的深入了解。在超过40万英国生物库参与者中,我们对3759个pLOF变异体进行了关联分析,这些变异体具有6种代谢特征,6种心脏代谢性疾病和12种其他疾病。我们确定了18个新的低频或罕见(等位基因频率 5%)pLOF变异表型关联。 GPR151基因中的pLOF变体可预防肥胖和2型糖尿病,IL33基因可预防哮喘和过敏性疾病,而IFIH1基因则可预防甲状腺功能减退。在PDE3B基因中,pLOF变体与身高升高,体脂分布改善和免受冠心病有关。我们的发现优先考虑pLOF变体的药理学模拟可以降低疾病风险的基因。

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