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Identification of seven novel loci associated with amino acid levels using single-variant and gene-based tests in 8545 Finnish men from the METSIM study.


ABSTRACT: Comprehensive metabolite profiling captures many highly heritable traits, including amino acid levels, which are potentially sensitive biomarkers for disease pathogenesis. To better understand the contribution of genetic variation to amino acid levels, we performed single variant and gene-based tests of association between nine serum amino acids (alanine, glutamine, glycine, histidine, isoleucine, leucine, phenylalanine, tyrosine, and valine) and 16.6 million genotyped and imputed variants in 8545 non-diabetic Finnish men from the METabolic Syndrome In Men (METSIM) study with replication in Northern Finland Birth Cohort (NFBC1966). We identified five novel loci associated with amino acid levels (P = < 5×10-8): LOC157273/PPP1R3B with glycine (rs9987289, P = 2.3×10-26); ZFHX3 (chr16:73326579, minor allele frequency (MAF) = 0.42%, P = 3.6×10-9), LIPC (rs10468017, P = 1.5×10-8), and WWOX (rs9937914, P = 3.8×10-8) with alanine; and TRIB1 with tyrosine (rs28601761, P = 8×10-9). Gene-based tests identified two novel genes harboring missense variants of MAF <1% that show aggregate association with amino acid levels: PYCR1 with glycine (Pgene = 1.5×10-6) and BCAT2 with valine (Pgene = 7.4×10-7); neither gene was implicated by single variant association tests. These findings are among the first applications of gene-based tests to identify new loci for amino acid levels. In addition to the seven novel gene associations, we identified five independent signals at established amino acid loci, including two rare variant signals at GLDC (rs138640017, MAF=0.95%, Pconditional = 5.8×10-40) with glycine levels and HAL (rs141635447, MAF = 0.46%, Pconditional = 9.4×10-11) with histidine levels. Examination of all single variant association results in our data revealed a strong inverse relationship between effect size and MAF (Ptrend<0.001). These novel signals provide further insight into the molecular mechanisms of amino acid metabolism and potentially, their perturbations in disease.

SUBMITTER: Teslovich TM 

PROVIDER: S-EPMC5905595 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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Identification of seven novel loci associated with amino acid levels using single-variant and gene-based tests in 8545 Finnish men from the METSIM study.

Teslovich Tanya M TM   Kim Daniel Seung DS   Yin Xianyong X   Stancáková Alena A   Jackson Anne U AU   Wielscher Matthias M   Naj Adam A   Perry John R B JRB   Huyghe Jeroen R JR   Stringham Heather M HM   Davis James P JP   Raulerson Chelsea K CK   Welch Ryan P RP   Fuchsberger Christian C   Locke Adam E AE   Sim Xueling X   Chines Peter S PS   Narisu Narisu N   Kangas Antti J AJ   Soininen Pasi P   Ala-Korpela Mika M   Gudnason Vilmundur V   Musani Solomon K SK   Jarvelin Marjo-Riitta MR   Schellenberg Gerard D GD   Speliotes Elizabeth K EK   Kuusisto Johanna J   Collins Francis S FS   Boehnke Michael M   Laakso Markku M   Mohlke Karen L KL  

Human molecular genetics 20180501 9


Comprehensive metabolite profiling captures many highly heritable traits, including amino acid levels, which are potentially sensitive biomarkers for disease pathogenesis. To better understand the contribution of genetic variation to amino acid levels, we performed single variant and gene-based tests of association between nine serum amino acids (alanine, glutamine, glycine, histidine, isoleucine, leucine, phenylalanine, tyrosine, and valine) and 16.6 million genotyped and imputed variants in 85  ...[more]

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