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循环代谢生物标志物中稀有变异的影响。

The influence of rare variants in circulating metabolic biomarkers.

机构信息

Wellcome Sanger Institute, Cambridge, United Kingdom.

MRC/BHF Cardiovascular Epidemiology Unit, Department of Public Health and Primary Care, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS Genet. 2020 Mar 9;16(3):e1008605. doi: 10.1371/journal.pgen.1008605. eCollection 2020 Mar.

Abstract

Circulating metabolite levels are biomarkers for cardiovascular disease (CVD). Here we studied, association of rare variants and 226 serum lipoproteins, lipids and amino acids in 7,142 (discovery plus follow-up) healthy participants. We leveraged the information from multiple metabolite measurements on the same participants to improve discovery in rare variant association analyses for gene-based and gene-set tests by incorporating correlated metabolites as covariates in the validation stage. Gene-based analysis corrected for the effective number of tests performed, confirmed established associations at APOB, APOC3, PAH, HAL and PCSK (p<1.32x10-7) and identified novel gene-trait associations at a lower stringency threshold with ACSL1, MYCN, FBXO36 and B4GALNT3 (p<2.5x10-6). Regulation of the pyruvate dehydrogenase (PDH) complex was associated for the first time, in gene-set analyses also corrected for effective number of tests, with IDL and LDL parameters, as well as circulating cholesterol (pMETASKAT<2.41x10-6). In conclusion, using an approach that leverages metabolite measurements obtained in the same participants, we identified novel loci and pathways involved in the regulation of these important metabolic biomarkers. As large-scale biobanks continue to amass sequencing and phenotypic information, analytical approaches such as ours will be useful to fully exploit the copious amounts of biological data generated in these efforts.

摘要

循环代谢物水平是心血管疾病 (CVD) 的生物标志物。在这里,我们研究了 7142 名(发现加后续)健康参与者中罕见变异与 226 种血清脂蛋白、脂质和氨基酸的关联。我们利用了同一参与者的多种代谢物测量信息,通过在验证阶段将相关代谢物作为协变量纳入基因和基因集检验的稀有变异关联分析中,从而提高了发现稀有变异关联的能力。基因检验纠正了进行的有效检验数量,确认了在 APOB、APOC3、PAH、HAL 和 PCSK 处的已有关联(p<1.32x10-7),并在较低的严格性阈值下发现了新的基因-性状关联,包括 ACSL1、MYCN、FBXO36 和 B4GALNT3(p<2.5x10-6)。首次在基因集分析中,与丙酮酸脱氢酶 (PDH) 复合物的调控相关,该分析也针对有效检验数量进行了校正,与 IDL 和 LDL 参数以及循环胆固醇相关(pMETASKAT<2.41x10-6)。总之,使用一种利用同一参与者获得的代谢物测量的方法,我们确定了与这些重要代谢生物标志物的调节相关的新基因座和途径。随着大型生物库继续积累测序和表型信息,像我们这样的分析方法将有助于充分利用这些努力中产生的大量生物数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a68e/7108731/a92da49bdda5/pgen.1008605.g001.jpg

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