The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion

The common ABCG2 variant Q141K contributes to hyperuricemia and gout risk. Here, using a human interventional study and a new orthologous mouse model, the authors report a tissue specific pathobiology of the Q141K variant, and support a significant role for ABCG2 in urate excretion in both the kidne...

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Autores principales: Kazi Mirajul Hoque, Eryn E. Dixon, Raychel M. Lewis, Jordyn Allan, Gregory D. Gamble, Amanda J. Phipps-Green, Victoria L. Halperin Kuhns, Anne M. Horne, Lisa K. Stamp, Tony R. Merriman, Nicola Dalbeth, Owen M. Woodward
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/12c73f6333324432b9f2c84850631506
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spelling oai:doaj.org-article:12c73f6333324432b9f2c848506315062021-12-02T15:02:47ZThe ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion10.1038/s41467-020-16525-w2041-1723https://doaj.org/article/12c73f6333324432b9f2c848506315062020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16525-whttps://doaj.org/toc/2041-1723The common ABCG2 variant Q141K contributes to hyperuricemia and gout risk. Here, using a human interventional study and a new orthologous mouse model, the authors report a tissue specific pathobiology of the Q141K variant, and support a significant role for ABCG2 in urate excretion in both the kidney and intestine.Kazi Mirajul HoqueEryn E. DixonRaychel M. LewisJordyn AllanGregory D. GambleAmanda J. Phipps-GreenVictoria L. Halperin KuhnsAnne M. HorneLisa K. StampTony R. MerrimanNicola DalbethOwen M. WoodwardNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kazi Mirajul Hoque
Eryn E. Dixon
Raychel M. Lewis
Jordyn Allan
Gregory D. Gamble
Amanda J. Phipps-Green
Victoria L. Halperin Kuhns
Anne M. Horne
Lisa K. Stamp
Tony R. Merriman
Nicola Dalbeth
Owen M. Woodward
The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
description The common ABCG2 variant Q141K contributes to hyperuricemia and gout risk. Here, using a human interventional study and a new orthologous mouse model, the authors report a tissue specific pathobiology of the Q141K variant, and support a significant role for ABCG2 in urate excretion in both the kidney and intestine.
format article
author Kazi Mirajul Hoque
Eryn E. Dixon
Raychel M. Lewis
Jordyn Allan
Gregory D. Gamble
Amanda J. Phipps-Green
Victoria L. Halperin Kuhns
Anne M. Horne
Lisa K. Stamp
Tony R. Merriman
Nicola Dalbeth
Owen M. Woodward
author_facet Kazi Mirajul Hoque
Eryn E. Dixon
Raychel M. Lewis
Jordyn Allan
Gregory D. Gamble
Amanda J. Phipps-Green
Victoria L. Halperin Kuhns
Anne M. Horne
Lisa K. Stamp
Tony R. Merriman
Nicola Dalbeth
Owen M. Woodward
author_sort Kazi Mirajul Hoque
title The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
title_short The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
title_full The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
title_fullStr The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
title_full_unstemmed The ABCG2 Q141K hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
title_sort abcg2 q141k hyperuricemia and gout associated variant illuminates the physiology of human urate excretion
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/12c73f6333324432b9f2c84850631506
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