Scinovex
review Open AccessTop 1% cited

Meta-Analysis of 28,141 Individuals Identifies Common Variants within Five New Loci That Influence Uric Acid Concentrations

PLoS Genetics · 2009 · Vol. 5(6) · pp. e1000504–e1000504
Melanie KolzToby JohnsonSerena SannaAlexander TeumerVéronique VitartMarkus PerolaMassimo ManginoEva AlbrechtChris WallaceMartin FarrallÅsa JohanssonDale R. NyholtYurii S. AulchenkoJ. BeckmannSven BergmannMurielle BochudMatthew A. BrownHarry CampbellJohn ConnellAnna F. DominiczakGeorg HomuthClaudia LaminaMark I. McCarthyThomas MeitingerVincent MooserPatricia B. MunroeMatthias NauckJohn F. PedenHolger ProkischPerttu SaloVeikko SalomaaNilesh J. SamaniDavid SchlessingerManuela UdaUwe VölkerGérard WaeberDawn WaterworthRui Wang‐SattlerAlan F. WrightJerzy AdamskiJohn B. WhitfieldUlf GyllenstenJames F. WilsonIgor RudanPeter P. PramstallerHugh WatkinsAngela DoeringH.‐Erich Wichmannfor the KORA StudyTim D. SpectorLeena PeltonenHenry VölzkeRamaiah NagarajaPéter VollenweiderMark J. Caulfieldfor the WTCCCThomas IlligChristian Gieger

Abstract

Elevated serum uric acid levels cause gout and are a risk factor for cardiovascular disease and diabetes. To investigate the polygenetic basis of serum uric acid levels, we conducted a meta-analysis of genome-wide association scans from 14 studies totalling 28,141 participants of European descent, resulting in identification of 954 SNPs distributed across nine loci that exceeded the threshold of genome-wide significance, five of which are novel. Overall, the common variants associated with serum uric acid levels fall in the following nine regions: SLC2A9 (p = 5.2x10(-201)), ABCG2 (p = 3.1x10(-26)), SLC17A1 (p = 3.0x10(-14)), SLC22A11 (p = 6.7x10(-14)), SLC22A12 (p = 2.0x10(-9)), SLC16A9 (p = 1.1x10(-8)), GCKR (p = 1.4x10(-9)), LRRC16A (p = 8.5x10(-9)), and near PDZK1 (p = 2.7x10(-9)). Identified variants were analyzed for gender differences. We found that the minor allele for rs734553 in SLC2A9 has greater influence in lowering uric acid levels in women and the minor allele of rs2231142 in ABCG2 elevates uric acid levels more strongly in men compared to women. To further characterize the identified variants, we analyzed their association with a panel of metabolites. rs12356193 within SLC16A9 was associated with DL-carnitine (p = 4.0x10(-26)) and propionyl-L-carnitine (p = 5.0x10(-8)) concentrations, which in turn were associated with serum UA levels (p = 1.4x10(-57) and p = 8.1x10(-54), respectively), forming a triangle between SNP, metabolites, and UA levels. Taken together, these associations highlight additional pathways that are important in the regulation of serum uric acid levels and point toward novel potential targets for pharmacological intervention to prevent or treat hyperuricemia. In addition, these findings strongly support the hypothesis that transport proteins are key in regulating serum uric acid levels.

Gout, Hyperuricemia, Uric AcidAlcohol Consumption and Health EffectsLiver Disease Diagnosis and TreatmentBiologyUric acidGeneticsMeta-analysisComputational biologyEvolutionary biologyBioinformaticsInternal medicineEndocrinology

MeSH terms

FemaleGoutHumansMaleUric AcidGenetic VariationGenome-Wide Association Study

Funding

  • National Science Foundation
  • AstraZeneca
  • GlaxoSmithKline
  • Helsingin Yliopisto
  • Sveučilište u Zagrebu
  • Wellcome Trust
  • Chronic Disease Research Foundation
  • National Institute for Health and Care Research
  • British Heart Foundation
  • Royal Society
  • European Commission
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Bundesministerium für Bildung und Forschung
  • Knut och Alice Wallenbergs Stiftelse
  • Chinese Society of Clinical Oncology
  • Provincia autonoma di Bolzano - Alto Adige
  • Ministry of Cultural Affairs
  • National Institutes of Health
  • Medical Research Council
  • National Health and Medical Research Council
  • National Institute on Aging
Citations
655
FWCI
25.08
field-weighted impact
References
40
Percentile
100%
vs. same field & year
Citations per year
Cited by
Serum uric acid and the risk of cardiovascular and renal disease
Journal of Hypertension · 2015 · 460 citations
Uric acid and cardiovascular disease
Clinica Chimica Acta · 2018 · 498 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.