Literature DB >> 24301058

Replication of the effect of SLC2A9 genetic variation on serum uric acid levels in American Indians.

V Saroja Voruganti1, Nora Franceschini2, Karin Haack3, Sandra Laston3, Jean W MacCluer3, Jason G Umans4, Anthony G Comuzzie3, Kari E North5, Shelley A Cole3.   

Abstract

Increased serum uric acid (SUA) or hyperuricemia, a risk factor for gout, renal and cardiovascular diseases, is caused by either increased production or decreased excretion of uric acid or a mix of both. The solute carrier protein 2 family, member 9 (SLC2A9) gene encodes a transporter that mediates urate flux across the renal proximal tubule. Genome-wide association studies have consistently shown the association of single-nucleotide polymorphisms in this gene with SUA in majority populations. American Indian participants of the Strong Heart Family Study, belonging to multigenerational families, have high prevalence of hyperuricemia. We conducted measured genotype analyses, based on variance components decomposition method and accounting for family relationships, to assess whether the association between SUA and SLC2A9 gene polymorphisms generalized to American Indians (n=3604) of this study. Seven polymorphisms were selected for genotyping based on their association with SUA levels in other populations. A strong association was found between SLC2A9 gene polymorphisms and SUA in all centers combined (P-values: 1.3 × 10(-31)-5.1 × 10(-23)) and also when stratified by recruitment center; P-values: 1.2 × 10(-14)-1.0 × 10(-5). These polymorphisms were also associated with the estimated glomerular filtration rate and serum creatinine but not albumin-creatinine ratio. In summary, the association of polymorphisms in the uric acid transporter gene with SUA levels extends to a new population of American Indians.

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Year:  2013        PMID: 24301058      PMCID: PMC4060115          DOI: 10.1038/ejhg.2013.264

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   4.246


  52 in total

1.  A general test of association for quantitative traits in nuclear families.

Authors:  G R Abecasis; L R Cardon; W O Cookson
Journal:  Am J Hum Genet       Date:  2000-01       Impact factor: 11.025

2.  Determination of creatinine by means of automatic chemical analysis.

Authors:  A L CHASSON; H J GRADY; M A STANLEY
Journal:  Tech Bull Regist Med Technol       Date:  1960-12

3.  Uric acid, hypertension, and chronic kidney disease among Alaska Eskimos: the Genetics of Coronary Artery Disease in Alaska Natives (GOCADAN) study.

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4.  Association between SLC2A9 transporter gene variants and uric acid phenotypes in African American and white families.

Authors:  Andrew D Rule; Mariza de Andrade; Martha Matsumoto; Tom H Mosley; Sharon Kardia; Stephen T Turner
Journal:  Rheumatology (Oxford)       Date:  2010-12-24       Impact factor: 7.580

5.  The use of measured genotype information in the analysis of quantitative phenotypes in man. I. Models and analytical methods.

Authors:  E Boerwinkle; R Chakraborty; C F Sing
Journal:  Ann Hum Genet       Date:  1986-05       Impact factor: 1.670

6.  Genetic variation in APOJ, LPL, and TNFRSF10B affects plasma fatty acid distribution in Alaskan Eskimos.

Authors:  V Saroja Voruganti; Shelley A Cole; Sven O E Ebbesson; Harald H H Göring; Karin Haack; Sandra Laston; Charlotte R Wenger; M Elizabeth Tejero; Richard B Devereux; Richard R Fabsitz; Jean W MacCluer; Jason G Umans; Barbara V Howard; Anthony G Comuzzie
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Authors:  Jiunn-Horng Chen; Shao-Yuan Chuang; Hsin-Jen Chen; Wen-Ting Yeh; Wen-Harn Pan
Journal:  Arthritis Rheum       Date:  2009-02-15

8.  [Association between hyperuricemia and insulin resistance].

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  16 in total

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2.  Uric acid is not associated with decline in renal function or time to renal replacement therapy initiation in a referred cohort of patients with Stage III, IV and V chronic kidney disease.

Authors:  Hakan Nacak; Merel van Diepen; Abdul R Qureshi; Juan J Carrero; Theo Stijnen; Friedo W Dekker; Marie Evans
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Review 3.  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 4.  Gout: a review of nonmodifiable and modifiable risk factors.

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6.  SLC2A9 Genotype Is Associated with SLC2A9 Gene Expression and Urinary Uric Acid Concentration.

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7.  The Potential Biomarkers to Identify the Development of Steatosis in Hyperuricemia.

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8.  Blueberry Consumption Affects Serum Uric Acid Concentrations in Older Adults in a Sex-Specific Manner.

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9.  GWAS and transcriptional analysis prioritize ITPR1 and CNTN4 for a serum uric acid 3p26 QTL in Mexican Americans.

Authors:  Geetha Chittoor; Jack W Kent; Marcio Almeida; Sobha Puppala; Vidya S Farook; Shelley A Cole; Karin Haack; Harald H H Göring; Jean W MacCluer; Joanne E Curran; Melanie A Carless; Matthew P Johnson; Eric K Moses; Laura Almasy; Michael C Mahaney; Donna M Lehman; Ravindranath Duggirala; Anthony G Comuzzie; John Blangero; Venkata Saroja Voruganti
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10.  Association of SLC2A9 genotype with phenotypic variability of serum urate in pre-menopausal women.

Authors:  Ruth K Topless; Tanya J Flynn; Murray Cadzow; Lisa K Stamp; Nicola Dalbeth; Michael A Black; Tony R Merriman
Journal:  Front Genet       Date:  2015-10-14       Impact factor: 4.599

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