Human Longevity, Inc., San Diego, California, USA.
Department of Twin Research and Genetic Epidemiology, King's College, London, UK.
Nat Genet. 2017 Apr;49(4):568-578. doi: 10.1038/ng.3809. Epub 2017 Mar 6.
Genetic factors modifying the blood metabolome have been investigated through genome-wide association studies (GWAS) of common genetic variants and through exome sequencing. We conducted a whole-genome sequencing study of common, low-frequency and rare variants to associate genetic variations with blood metabolite levels using comprehensive metabolite profiling in 1,960 adults. We focused the analysis on 644 metabolites with consistent levels across three longitudinal data collections. Genetic sequence variations at 101 loci were associated with the levels of 246 (38%) metabolites (P ≤ 1.9 × 10). We identified 113 (10.7%) among 1,054 unrelated individuals in the cohort who carried heterozygous rare variants likely influencing the function of 17 genes. Thirteen of the 17 genes are associated with inborn errors of metabolism or other pediatric genetic conditions. This study extends the map of loci influencing the metabolome and highlights the importance of heterozygous rare variants in determining abnormal blood metabolic phenotypes in adults.
通过全基因组关联研究(GWAS)对常见遗传变异和外显子组测序,研究了改变血液代谢组的遗传因素。我们对常见的、低频和罕见的变体进行了全基因组测序研究,使用 1960 名成年人的综合代谢物谱对遗传变异与血液代谢物水平进行了关联。我们将分析集中在 644 种具有三种纵向数据集一致水平的代谢物上。101 个位点的遗传序列变异与 246 种(38%)代谢物的水平相关(P ≤ 1.9×10)。在队列中的 1054 名无关个体中,我们鉴定出 113 个(10.7%)个体携带可能影响 17 个基因功能的杂合性罕见变异。这 17 个基因中的 13 个与先天性代谢错误或其他儿科遗传病症有关。这项研究扩展了影响代谢组的基因座图谱,并强调了杂合性罕见变异在确定成年人异常血液代谢表型中的重要性。