| Literature DB >> 27453504 |
Eugene P Rhee1,2,3, Qiong Yang4, Bing Yu5, Xuan Liu4, Susan Cheng6,7, Amy Deik3, Kerry A Pierce3, Kevin Bullock3, Jennifer E Ho8, Daniel Levy6,9, Jose C Florez10,11,12, Sek Kathiresan8,11,12,13, Martin G Larson4,6,14, Ramachandran S Vasan6,15, Clary B Clish3, Thomas J Wang16,17, Eric Boerwinkle5,18, Christopher J O'Donnell6,19, Robert E Gerszten20.
Abstract
The study of rare variants may enhance our understanding of the genetic determinants of the metabolome. Here, we analyze the association between 217 plasma metabolites and exome variants on the Illumina HumanExome Beadchip in 2,076 participants in the Framingham Heart Study, with replication in 1,528 participants of the Atherosclerosis Risk in Communities Study. We identify an association between GMPS and xanthosine using single variant analysis and associations between HAL and histidine, PAH and phenylalanine, and UPB1 and ureidopropionate using gene-based tests (P<5 × 10(-8) in meta-analysis), highlighting novel coding variants that may underlie inborn errors of metabolism. Further, we show how an examination of variants across the spectrum of allele frequency highlights independent association signals at select loci and generates a more integrated view of metabolite heritability. These studies build on prior metabolomics genome wide association studies to provide a more complete picture of the genetic architecture of the plasma metabolome.Entities:
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Year: 2016 PMID: 27453504 PMCID: PMC4962516 DOI: 10.1038/ncomms12360
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Single variants associated with plasma metabolites.
| Cystathionine | rs28941785 | p.Thr67Ile | 1 | 70881670 | C/T | 0.01 | 1.34 | 5.5 × 10−14 | Metabolite not measured | |||||
| Xanthosine | rs61750370 | p.Tyr528Ser | 3 | 155649576 | A/C | 0.01 | 0.95 | 2.8 × 10−7 | 0.01 | 0.61 | 6 × 10−4 | 0.78 | 8.9 × 10−10 | |
ARIC, atherosclerosis risk in communities study; FHS, Framingham Heart Study; SNP, single nucleotide polymorphism.
P-values derived from linear mixed effects models.
Gene-based associations with plasma metabolites.
Figure 1Box plot visualization of gene-based associations at HAL and PAH in FHS.
(a) Plasma histidine levels and damaging mutations in HAL and (b) Plasma phenylalanine levels and damaging mutations in PAH, with corresponding rs numbers on x axis. Each data point represents an individual's plasma metabolite level (standardized along the y axis). Farthest left box plots show metabolite levels among individuals with no damaging mutations. The lines in the boxes represent median metabolite levels; the lower and upper boundaries of the boxes represent the 25th and 75th percentiles, respectively; the lower and upper whiskers represent the minimum and maximum values, respectively. *compound heterozygotes at rs61937878 and rs140799551. SNPs with P<0.05 are underlined; P-values derived from linear mixed effects models.
New exome variants at loci previously identified by GWAS.
| Dimethylglycine | 5 | 78340223 | rs145258663 | Nonsynonymous | 0.005 | G/A | 7 × 10−22 | rs248386 | 1.9 × 10−9 | |
| 5 | 78365983 | rs248386 | Intronic | 0.18 | C/A | 6.6 × 10−33 | rs145258663 | 4.5 × 10−19 | ||
| Proline | 22 | 18910355 | rs5747933 | Nonsynonymous | 0.049 | G/T | 2.3 × 10−12 | rs2078743 | 3.4 × 10−10 | |
| 22 | 17346859 | rs2078743 | Intronic | 0.090 | G/A | 2.2 × 10−14 | rs5747933 | 3.7 × 10−12 | ||
| DAG 36:2 | 11 | 116662407 | rs3135506 | Nonsynonymous | 0.062 | G/C | 2.7 × 10−8 | rs964184 | 4.9 × 10−2 | |
| 11 | 116154127 | rs964184 | Intronic | 0.14 | C/G | 1.3 × 10−11 | rs3135506 | 7.7 × 10−5 |
DAG, diacylglycerol, SNP, single nucleotide polymorphism.
P-values derived from linear mixed effects models.
Figure 2Interindividual variability and allele frequency in FHS.
Estimates of metabolite variance explained by SNPs captured across the common variant and exome variant arrays are shown for (a) positively charged polar analytes, (b) negatively charged polar analytes, (c) positively charged lipids, not including TAGs, and (d) TAGs. For each metabolite, the relative contribution for SNPs of MAF <0.5%, 0.5–5% and >5% are shown. See Supplementary Table 2 for complete results and explanation of abbreviations.