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Genome-wide association study identifies novel genetic variants contributing to variation in blood metabolite levels

机译:全基因组关联研究确定了导致血液代谢产物水平变化的新型遗传变异

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摘要

Metabolites are small molecules involved in cellular metabolism, which can be detected in biological samples using metabolomic techniques. Here we present the results of genome-wide association and meta-analyses for variation in the blood serum levels of 129 metabolites as measured by the Biocrates metabolomic platform. In a discovery sample of 7,478 individuals of European descent, we find 4,068 genome-and metabolome-wide significant (Z-test, P<1.09 x 10(-9)) associations between single-nucleotide polymorphisms (SNPs) and metabolites, involving 59 independent SNPs and 85 metabolites. Five of the fifty-nine independent SNPs are new for serum metabolite levels, and were followed-up for replication in an independent sample (N = 1,182). The novel SNPs are located in or near genes encoding metabolite transporter proteins or enzymes (SLC22A16, ARG1, AGPS and ACSL1) that have demonstrated biomedical or pharmaceutical importance. The further characterization of genetic influences on metabolic phenotypes is important for progress in biological and medical research.
机译:代谢物是参与细胞代谢的小分子,可以使用代谢组学技术在生物样品中检测到。在这里,我们介绍了通过Biocrates代谢组学平台测量的129种代谢物的血清水平变化的全基因组关联和荟萃分析的结果。在一个7478名欧洲人后裔的发现样本中,我们发现单核苷酸多态性(SNP)与代谢物之间有4,068个基因组和代谢组范围的显着关联(Z检验,P <1.09 x 10(-9)),涉及59独立的SNP和85种代谢物。 59个独立的SNP中有5个是新的血清代谢产物水平,并在独立样本中进行了随访以进行复制(N = 1,182)。新型SNP位于编码代谢产物转运蛋白或酶(SLC22A16,ARG1,AGPS和ACSL1)的基因中或附近,这些基因已证明具有生物医学或药学重要性。遗传对代谢表型的影响的进一步表征对于生物学和医学研究的进展很重要。

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