Literature DB >> 21768215

Genome-wide association study for serum urate concentrations and gout among African Americans identifies genomic risk loci and a novel URAT1 loss-of-function allele.

Adrienne Tin1, Owen M Woodward, Wen Hong Linda Kao, Ching-Ti Liu, Xiaoning Lu, Michael A Nalls, Daniel Shriner, Mariam Semmo, Ermeg L Akylbekova, Sharon B Wyatt, Shih-Jen Hwang, Qiong Yang, Alan B Zonderman, Adebowale A Adeyemo, Cameron Palmer, Yan Meng, Muredach Reilly, Michael G Shlipak, David Siscovick, Michele K Evans, Charles N Rotimi, Michael F Flessner, Michael Köttgen, L Adrienne Cupples, Caroline S Fox, Anna Köttgen.   

Abstract

Serum urate concentrations are highly heritable and elevated serum urate is a key risk factor for gout. Genome-wide association studies (GWAS) of serum urate in African American (AA) populations are lacking. We conducted a meta-analysis of GWAS of serum urate levels and gout among 5820 AA and a large candidate gene study among 6890 AA and 21 708 participants of European ancestry (EA) within the Candidate Gene Association Resource Consortium. Findings were tested for replication among 1996 independent AA individuals, and evaluated for their association among 28 283 EA participants of the CHARGE Consortium. Functional studies were conducted using (14)C-urate transport assays in mammalian Chinese hamster ovary cells. In the discovery GWAS of serum urate, three loci achieved genome-wide significance (P< 5.0 × 10(-8)): a novel locus near SGK1/SLC2A12 on chromosome 6 (rs9321453, P= 1.0 × 10(-9)), and two loci previously identified in EA participants, SLC2A9 (P= 3.8 × 10(-32)) and SLC22A12 (P= 2.1 × 10(-10)). A novel rare non-synonymous variant of large effect size in SLC22A12, rs12800450 (minor allele frequency 0.01, G65W), was identified and replicated (beta -1.19 mg/dl, P= 2.7 × 10(-16)). (14)C-urate transport assays showed reduced urate transport for the G65W URAT1 mutant. Finally, in analyses of 11 loci previously associated with serum urate in EA individuals, 10 of 11 lead single-nucleotide polymorphisms showed direction-consistent association with urate among AA. In summary, we identified and replicated one novel locus in association with serum urate levels and experimentally characterize the novel G65W variant in URAT1 as a functional allele. Our data support the importance of multi-ethnic GWAS in the identification of novel risk loci as well as functional variants.

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Year:  2011        PMID: 21768215      PMCID: PMC3177647          DOI: 10.1093/hmg/ddr307

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  53 in total

1.  Replicating genotype-phenotype associations.

Authors:  Stephen J Chanock; Teri Manolio; Michael Boehnke; Eric Boerwinkle; David J Hunter; Gilles Thomas; Joel N Hirschhorn; Goncalo Abecasis; David Altshuler; Joan E Bailey-Wilson; Lisa D Brooks; Lon R Cardon; Mark Daly; Peter Donnelly; Joseph F Fraumeni; Nelson B Freimer; Daniela S Gerhard; Chris Gunter; Alan E Guttmacher; Mark S Guyer; Emily L Harris; Josephine Hoh; Robert Hoover; C Augustine Kong; Kathleen R Merikangas; Cynthia C Morton; Lyle J Palmer; Elizabeth G Phimister; John P Rice; Jerry Roberts; Charles Rotimi; Margaret A Tucker; Kyle J Vogan; Sholom Wacholder; Ellen M Wijsman; Deborah M Winn; Francis S Collins
Journal:  Nature       Date:  2007-06-07       Impact factor: 49.962

2.  PLINK: a tool set for whole-genome association and population-based linkage analyses.

Authors:  Shaun Purcell; Benjamin Neale; Kathe Todd-Brown; Lori Thomas; Manuel A R Ferreira; David Bender; Julian Maller; Pamela Sklar; Paul I W de Bakker; Mark J Daly; Pak C Sham
Journal:  Am J Hum Genet       Date:  2007-07-25       Impact factor: 11.025

3.  Plasma urate level is directly regulated by a voltage-driven urate efflux transporter URATv1 (SLC2A9) in humans.

Authors:  Naohiko Anzai; Kimiyoshi Ichida; Promsuk Jutabha; Toru Kimura; Ellappan Babu; Chun Ji Jin; Sunena Srivastava; Kenichiro Kitamura; Ichiro Hisatome; Hitoshi Endou; Hiroyuki Sakurai
Journal:  J Biol Chem       Date:  2008-08-13       Impact factor: 5.157

Review 4.  Uric acid and cardiovascular risk.

Authors:  Daniel I Feig; Duk-Hee Kang; Richard J Johnson
Journal:  N Engl J Med       Date:  2008-10-23       Impact factor: 91.245

5.  Association of three genetic loci with uric acid concentration and risk of gout: a genome-wide association study.

Authors:  Abbas Dehghan; Anna Köttgen; Qiong Yang; Shih-Jen Hwang; Wh Linda Kao; Fernando Rivadeneira; Eric Boerwinkle; Daniel Levy; Albert Hofman; Brad C Astor; Emelia J Benjamin; Cornelia M van Duijn; Jacqueline C Witteman; Josef Coresh; Caroline S Fox
Journal:  Lancet       Date:  2008-10-01       Impact factor: 79.321

6.  SLC2A9 is a newly identified urate transporter influencing serum urate concentration, urate excretion and gout.

Authors:  Veronique Vitart; Igor Rudan; Caroline Hayward; Nicola K Gray; James Floyd; Colin N A Palmer; Sara A Knott; Ivana Kolcic; Ozren Polasek; Juergen Graessler; James F Wilson; Anthony Marinaki; Philip L Riches; Xinhua Shu; Branka Janicijevic; Nina Smolej-Narancic; Barbara Gorgoni; Joanne Morgan; Susan Campbell; Zrinka Biloglav; Lovorka Barac-Lauc; Marijana Pericic; Irena Martinovic Klaric; Lina Zgaga; Tatjana Skaric-Juric; Sarah H Wild; William A Richardson; Peter Hohenstein; Charley H Kimber; Albert Tenesa; Louise A Donnelly; Lynette D Fairbanks; Martin Aringer; Paul M McKeigue; Stuart H Ralston; Andrew D Morris; Pavao Rudan; Nicholas D Hastie; Harry Campbell; Alan F Wright
Journal:  Nat Genet       Date:  2008-03-09       Impact factor: 38.330

7.  SLC2A9 influences uric acid concentrations with pronounced sex-specific effects.

Authors:  Angela Döring; Christian Gieger; Divya Mehta; Henning Gohlke; Holger Prokisch; Stefan Coassin; Guido Fischer; Kathleen Henke; Norman Klopp; Florian Kronenberg; Bernhard Paulweber; Arne Pfeufer; Dieter Rosskopf; Henry Völzke; Thomas Illig; Thomas Meitinger; H-Erich Wichmann; Christa Meisinger
Journal:  Nat Genet       Date:  2008-03-09       Impact factor: 38.330

8.  SLC2A9 is a high-capacity urate transporter in humans.

Authors:  Mark J Caulfield; Patricia B Munroe; Deb O'Neill; Kate Witkowska; Fadi J Charchar; Manuel Doblado; Sarah Evans; Susana Eyheramendy; Abiodun Onipinla; Philip Howard; Sue Shaw-Hawkins; Richard J Dobson; Chris Wallace; Stephen J Newhouse; Morris Brown; John M Connell; Anna Dominiczak; Martin Farrall; G Mark Lathrop; Nilesh J Samani; Meena Kumari; Michael Marmot; Eric Brunner; John Chambers; Paul Elliott; Jaspal Kooner; Maris Laan; Elin Org; Gudrun Veldre; Margus Viigimaa; Francesco P Cappuccio; Chen Ji; Roberto Iacone; Pasquale Strazzullo; Kelle H Moley; Chris Cheeseman
Journal:  PLoS Med       Date:  2008-10-07       Impact factor: 11.069

9.  Concept, design and implementation of a cardiovascular gene-centric 50 k SNP array for large-scale genomic association studies.

Authors:  Brendan J Keating; Sam Tischfield; Sarah S Murray; Tushar Bhangale; Thomas S Price; Joseph T Glessner; Luana Galver; Jeffrey C Barrett; Struan F A Grant; Deborah N Farlow; Hareesh R Chandrupatla; Mark Hansen; Saad Ajmal; George J Papanicolaou; Yiran Guo; Mingyao Li; Stephanie Derohannessian; Paul I W de Bakker; Swneke D Bailey; Alexandre Montpetit; Andrew C Edmondson; Kent Taylor; Xiaowu Gai; Susanna S Wang; Myriam Fornage; Tamim Shaikh; Leif Groop; Michael Boehnke; Alistair S Hall; Andrew T Hattersley; Edward Frackelton; Nick Patterson; Charleston W K Chiang; Cecelia E Kim; Richard R Fabsitz; Willem Ouwehand; Alkes L Price; Patricia Munroe; Mark Caulfield; Thomas Drake; Eric Boerwinkle; David Reich; A Stephen Whitehead; Thomas P Cappola; Nilesh J Samani; A Jake Lusis; Eric Schadt; James G Wilson; Wolfgang Koenig; Mark I McCarthy; Sekar Kathiresan; Stacey B Gabriel; Hakon Hakonarson; Sonia S Anand; Muredach Reilly; James C Engert; Deborah A Nickerson; Daniel J Rader; Joel N Hirschhorn; Garret A Fitzgerald
Journal:  PLoS One       Date:  2008-10-31       Impact factor: 3.240

10.  The GLUT9 gene is associated with serum uric acid levels in Sardinia and Chianti cohorts.

Authors:  Siguang Li; Serena Sanna; Andrea Maschio; Fabio Busonero; Gianluca Usala; Antonella Mulas; Sandra Lai; Mariano Dei; Marco Orrù; Giuseppe Albai; Stefania Bandinelli; David Schlessinger; Edward Lakatta; Angelo Scuteri; Samer S Najjar; Jack Guralnik; Silvia Naitza; Laura Crisponi; Antonio Cao; Gonçalo Abecasis; Luigi Ferrucci; Manuela Uda; Wei-Min Chen; Ramaiah Nagaraja
Journal:  PLoS Genet       Date:  2007-11       Impact factor: 5.917

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  59 in total

Review 1.  The organic anion transporter (OAT) family: a systems biology perspective.

Authors:  Sanjay K Nigam; Kevin T Bush; Gleb Martovetsky; Sun-Young Ahn; Henry C Liu; Erin Richard; Vibha Bhatnagar; Wei Wu
Journal:  Physiol Rev       Date:  2015-01       Impact factor: 37.312

Review 2.  Genetics of hyperuricemia and gout: implications for the present and future.

Authors:  Ronald L George; Robert T Keenan
Journal:  Curr Rheumatol Rep       Date:  2013-02       Impact factor: 4.592

3.  Serum uric acid levels are associated with polymorphisms in the SLC2A9, SF1, and GCKR genes in a Chinese population.

Authors:  Xue Sun; Feng Jiang; Rong Zhang; Shan-shan Tang; Miao Chen; Dan-feng Peng; Jing Yan; Tao Wang; Shi-yun Wang; Yu-qian Bao; Cheng Hu; Wei-ping Jia
Journal:  Acta Pharmacol Sin       Date:  2014-10-06       Impact factor: 6.150

4.  Gout after living kidney donation: correlations with demographic traits and renal complications.

Authors:  Ngan N Lam; Amit X Garg; Dorry L Segev; Mark A Schnitzler; Huiling Xiao; David Axelrod; Daniel C Brennan; Bertram L Kasiske; Janet E Tuttle-Newhall; Krista L Lentine
Journal:  Am J Nephrol       Date:  2015-04-17       Impact factor: 3.754

5.  Refining genome-wide associated loci for serum uric acid in individuals with African ancestry.

Authors:  Guanjie Chen; Daniel Shriner; Ayo P Doumatey; Jie Zhou; Amy R Bentley; Lin Lei; Adebowale Adeyemo; Charles N Rotimi
Journal:  Hum Mol Genet       Date:  2020-02-01       Impact factor: 6.150

Review 6.  Hyperuricemia, Acute and Chronic Kidney Disease, Hypertension, and Cardiovascular Disease: Report of a Scientific Workshop Organized by the National Kidney Foundation.

Authors:  Richard J Johnson; George L Bakris; Claudio Borghi; Michel B Chonchol; David Feldman; Miguel A Lanaspa; Tony R Merriman; Orson W Moe; David B Mount; Laura Gabriella Sanchez Lozada; Eli Stahl; Daniel E Weiner; Glenn M Chertow
Journal:  Am J Kidney Dis       Date:  2018-02-27       Impact factor: 8.860

Review 7.  Gout: a review of nonmodifiable and modifiable risk factors.

Authors:  Lindsey A MacFarlane; Seoyoung C Kim
Journal:  Rheum Dis Clin North Am       Date:  2014-09-02       Impact factor: 2.670

8.  Novel allelic variants and evidence for a prevalent mutation in URAT1 causing renal hypouricemia: biochemical, genetics and functional analysis.

Authors:  Blanka Stiburkova; Ivan Sebesta; Kimiyoshi Ichida; Makiko Nakamura; Helena Hulkova; Vladimir Krylov; Lenka Kryspinova; Helena Jahnova
Journal:  Eur J Hum Genet       Date:  2013-02-06       Impact factor: 4.246

9.  Biological findings from the PheWAS catalog: focus on connective tissue-related disorders (pelvic floor dysfunction, abdominal hernia, varicose veins and hemorrhoids).

Authors:  Lyubov E Salnikova; Maryam B Khadzhieva; Dmitry S Kolobkov
Journal:  Hum Genet       Date:  2016-04-28       Impact factor: 4.132

10.  Safety and Efficacy of Benzbromarone and Febuxostat in Hyperuricemia Patients with Chronic Kidney Disease: A Prospective Pilot Study.

Authors:  Haibo Yu; Xinying Liu; Yaxiang Song; Jiafen Cheng; Hui Bao; Ling Qin; Xuan Zhou; Ling Wang; Ai Peng
Journal:  Clin Exp Nephrol       Date:  2018-05-14       Impact factor: 2.801

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