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预测的功能丧失变异体下游的代谢物提示与疾病的关系。

Metabolites downstream of predicted loss-of-function variants inform relationship to disease.

机构信息

The University of Sydney, School of Mathematics and Statistics, Sydney, NSW 2006, Australia; The University of Sydney, Charles Perkins Centre, Sydney, NSW 2065, Australia.

The University of Sydney, School of Mathematics and Statistics, Sydney, NSW 2006, Australia; The University of Sydney, Royal North Shore Hospital, Sydney, NSW 2065, Australia.

出版信息

Mol Genet Metab. 2019 Dec;128(4):476-482. doi: 10.1016/j.ymgme.2019.10.002. Epub 2019 Oct 17.

Abstract

A small minority (< 3%) of protein-coding genetic variants are predicted to lead to loss of protein function. However, these predicted loss-of-function (pLOF) variants can provide insight into mode of transcriptional effect. To examine how these changes are propagated to phenotype, we determined associations with downstream metabolites. We performed association analyses of 37 pLOF variants - previously reported to be significantly associated with disease in >400,000 subjects in UK Biobank - with metabolites. We conducted these analyses in three community-based cohorts: the Framingham Heart Study (FHS) Offspring Cohort, FHS Generation 3, and the KORA F4 cohort. We identified 19 new low-frequency or rare (minor allele frequency (MAF) <5%) pLOF variant-metabolite associations, and 12 new common (MAF > 5%) pLOF variant-metabolite associations. Rare pLOF variants in the genes BTN3A2, ENPEP, and GEM that have been associated with blood pressure in UK Biobank, were associated with vasoactive metabolites indoxyl sulfate, asymmetric dimethylarginine (ADMA), and with niacinamide, respectively. A common pLOF variant in gene CCHCR1, associated with asthma in UK Biobank, was associated with histamine and niacinamide in FHS Generation 3, both reported to play a role in this disease. Common variants in olfactory receptor gene OX4C11 that associated with blood pressure in UK Biobank were associated with the nicotine metabolite cotinine, suggesting an interaction between altered olfaction, smoking behaviour, and blood pressure. These findings provide biological validity for pLOF variant-disease associations, and point to the effector roles of common metabolites. Such an approach may provide novel disease markers and therapeutic targets.

摘要

一小部分(<3%)的蛋白质编码基因突变被预测会导致蛋白质功能丧失。然而,这些预测的功能丧失(pLOF)变体可以提供转录效应模式的见解。为了研究这些变化如何传递到表型,我们确定了与下游代谢物的关联。我们对 37 种 pLOF 变体进行了关联分析-先前在英国生物银行超过 400,000 名受试者中报告与疾病显著相关-与代谢物相关。我们在三个基于社区的队列中进行了这些分析:弗雷明汉心脏研究(FHS)后代队列、FHS 第 3 代和 KORA F4 队列。我们确定了 19 种新的低频或罕见(次要等位基因频率(MAF)<5%)pLOF 变体-代谢物关联,以及 12 种新的常见(MAF>5%)pLOF 变体-代谢物关联。与英国生物银行中血压相关的基因 BTN3A2、ENPEP 和 GEM 中的罕见 pLOF 变体与血管活性代谢物吲哚硫酸、不对称二甲基精氨酸(ADMA)和烟酰胺分别相关。在英国生物银行中与哮喘相关的基因 CCHCR1 中的常见 pLOF 变体与 FHS 第 3 代中的组氨酸和烟酰胺相关,两者均被报道在该疾病中发挥作用。与英国生物银行中血压相关的嗅觉受体基因 OX4C11 中的常见变体与尼古丁代谢物可替宁相关,表明嗅觉改变、吸烟行为和血压之间存在相互作用。这些发现为 pLOF 变体-疾病关联提供了生物学依据,并指出了常见代谢物的效应作用。这种方法可能为新的疾病标志物和治疗靶点提供依据。

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