SLC2A9 is a high-capacity urate transporter in humans.

<h4>Background</h4>Serum uric acid levels in humans are influenced by diet, cellular breakdown, and renal elimination, and correlate with blood pressure, metabolic syndrome, diabetes, gout, and cardiovascular disease. Recent genome-wide association scans have found common genetic variant...

Full description

Bibliographic Details
Main 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
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-10-01
Series:PLoS Medicine
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18842065/?tool=EBI
id doaj-892e31dab58f42d181e0f0303866af71
record_format Article
spelling doaj-892e31dab58f42d181e0f0303866af712021-06-17T04:36:37ZengPublic Library of Science (PLoS)PLoS Medicine1549-12771549-16762008-10-01510e19710.1371/journal.pmed.0050197SLC2A9 is a high-capacity urate transporter in humans.Mark J CaulfieldPatricia B MunroeDeb O'NeillKate WitkowskaFadi J CharcharManuel DobladoSarah EvansSusana EyheramendyAbiodun OnipinlaPhilip HowardSue Shaw-HawkinsRichard J DobsonChris WallaceStephen J NewhouseMorris BrownJohn M ConnellAnna DominiczakMartin FarrallG Mark LathropNilesh J SamaniMeena KumariMichael MarmotEric BrunnerJohn ChambersPaul ElliottJaspal KoonerMaris LaanElin OrgElin OrgGudrun VeldreMargus ViigimaaFrancesco P CappuccioChen JiRoberto IaconePasquale StrazzulloKelle H MoleyChris Cheeseman<h4>Background</h4>Serum uric acid levels in humans are influenced by diet, cellular breakdown, and renal elimination, and correlate with blood pressure, metabolic syndrome, diabetes, gout, and cardiovascular disease. Recent genome-wide association scans have found common genetic variants of SLC2A9 to be associated with increased serum urate level and gout. The SLC2A9 gene encodes a facilitative glucose transporter, and it has two splice variants that are highly expressed in the proximal nephron, a key site for urate handling in the kidney. We investigated whether SLC2A9 is a functional urate transporter that contributes to the longstanding association between urate and blood pressure in man.<h4>Methods and findings</h4>We expressed both SLC2A9 splice variants in Xenopus laevis oocytes and found both isoforms mediate rapid urate fluxes at concentration ranges similar to physiological serum levels (200-500 microM). Because SLC2A9 is a known facilitative glucose transporter, we also tested whether glucose or fructose influenced urate transport. We found that urate is transported by SLC2A9 at rates 45- to 60-fold faster than glucose, and demonstrated that SLC2A9-mediated urate transport is facilitated by glucose and, to a lesser extent, fructose. In addition, transport is inhibited by the uricosuric benzbromarone in a dose-dependent manner (Ki = 27 microM). Furthermore, we found urate uptake was at least 2-fold greater in human embryonic kidney (HEK) cells overexpressing SLC2A9 splice variants than nontransfected kidney cells. To confirm that our findings were due to SLC2A9, and not another urate transporter, we showed that urate transport was diminished by SLC2A9-targeted siRNA in a second mammalian cell line. In a cohort of men we showed that genetic variants of SLC2A9 are associated with reduced urinary urate clearance, which fits with common variation at SLC2A9 leading to increased serum urate. We found no evidence of association with hypertension (odds ratio 0.98, 95% confidence interval [CI] 0.9 to 1.05, p > 0.33) by meta-analysis of an SLC2A9 variant in six case-control studies including 11,897 participants. In a separate meta-analysis of four population studies including 11,629 participants we found no association of SLC2A9 with systolic (effect size -0.12 mm Hg, 95% CI -0.68 to 0.43, p = 0.664) or diastolic blood pressure (effect size -0.03 mm Hg, 95% CI -0.39 to 0.31, p = 0.82).<h4>Conclusions</h4>This study provides evidence that SLC2A9 splice variants act as high-capacity urate transporters and is one of the first functional characterisations of findings from genome-wide association scans. We did not find an association of the SLC2A9 gene with blood pressure in this study. Our findings suggest potential pathogenic mechanisms that could offer a new drug target for gout.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18842065/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author 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
Elin Org
Gudrun Veldre
Margus Viigimaa
Francesco P Cappuccio
Chen Ji
Roberto Iacone
Pasquale Strazzullo
Kelle H Moley
Chris Cheeseman
spellingShingle 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
Elin Org
Gudrun Veldre
Margus Viigimaa
Francesco P Cappuccio
Chen Ji
Roberto Iacone
Pasquale Strazzullo
Kelle H Moley
Chris Cheeseman
SLC2A9 is a high-capacity urate transporter in humans.
PLoS Medicine
author_facet 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
Elin Org
Gudrun Veldre
Margus Viigimaa
Francesco P Cappuccio
Chen Ji
Roberto Iacone
Pasquale Strazzullo
Kelle H Moley
Chris Cheeseman
author_sort Mark J Caulfield
title SLC2A9 is a high-capacity urate transporter in humans.
title_short SLC2A9 is a high-capacity urate transporter in humans.
title_full SLC2A9 is a high-capacity urate transporter in humans.
title_fullStr SLC2A9 is a high-capacity urate transporter in humans.
title_full_unstemmed SLC2A9 is a high-capacity urate transporter in humans.
title_sort slc2a9 is a high-capacity urate transporter in humans.
publisher Public Library of Science (PLoS)
series PLoS Medicine
issn 1549-1277
1549-1676
publishDate 2008-10-01
description <h4>Background</h4>Serum uric acid levels in humans are influenced by diet, cellular breakdown, and renal elimination, and correlate with blood pressure, metabolic syndrome, diabetes, gout, and cardiovascular disease. Recent genome-wide association scans have found common genetic variants of SLC2A9 to be associated with increased serum urate level and gout. The SLC2A9 gene encodes a facilitative glucose transporter, and it has two splice variants that are highly expressed in the proximal nephron, a key site for urate handling in the kidney. We investigated whether SLC2A9 is a functional urate transporter that contributes to the longstanding association between urate and blood pressure in man.<h4>Methods and findings</h4>We expressed both SLC2A9 splice variants in Xenopus laevis oocytes and found both isoforms mediate rapid urate fluxes at concentration ranges similar to physiological serum levels (200-500 microM). Because SLC2A9 is a known facilitative glucose transporter, we also tested whether glucose or fructose influenced urate transport. We found that urate is transported by SLC2A9 at rates 45- to 60-fold faster than glucose, and demonstrated that SLC2A9-mediated urate transport is facilitated by glucose and, to a lesser extent, fructose. In addition, transport is inhibited by the uricosuric benzbromarone in a dose-dependent manner (Ki = 27 microM). Furthermore, we found urate uptake was at least 2-fold greater in human embryonic kidney (HEK) cells overexpressing SLC2A9 splice variants than nontransfected kidney cells. To confirm that our findings were due to SLC2A9, and not another urate transporter, we showed that urate transport was diminished by SLC2A9-targeted siRNA in a second mammalian cell line. In a cohort of men we showed that genetic variants of SLC2A9 are associated with reduced urinary urate clearance, which fits with common variation at SLC2A9 leading to increased serum urate. We found no evidence of association with hypertension (odds ratio 0.98, 95% confidence interval [CI] 0.9 to 1.05, p > 0.33) by meta-analysis of an SLC2A9 variant in six case-control studies including 11,897 participants. In a separate meta-analysis of four population studies including 11,629 participants we found no association of SLC2A9 with systolic (effect size -0.12 mm Hg, 95% CI -0.68 to 0.43, p = 0.664) or diastolic blood pressure (effect size -0.03 mm Hg, 95% CI -0.39 to 0.31, p = 0.82).<h4>Conclusions</h4>This study provides evidence that SLC2A9 splice variants act as high-capacity urate transporters and is one of the first functional characterisations of findings from genome-wide association scans. We did not find an association of the SLC2A9 gene with blood pressure in this study. Our findings suggest potential pathogenic mechanisms that could offer a new drug target for gout.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18842065/?tool=EBI
work_keys_str_mv AT markjcaulfield slc2a9isahighcapacityuratetransporterinhumans
AT patriciabmunroe slc2a9isahighcapacityuratetransporterinhumans
AT deboneill slc2a9isahighcapacityuratetransporterinhumans
AT katewitkowska slc2a9isahighcapacityuratetransporterinhumans
AT fadijcharchar slc2a9isahighcapacityuratetransporterinhumans
AT manueldoblado slc2a9isahighcapacityuratetransporterinhumans
AT sarahevans slc2a9isahighcapacityuratetransporterinhumans
AT susanaeyheramendy slc2a9isahighcapacityuratetransporterinhumans
AT abiodunonipinla slc2a9isahighcapacityuratetransporterinhumans
AT philiphoward slc2a9isahighcapacityuratetransporterinhumans
AT sueshawhawkins slc2a9isahighcapacityuratetransporterinhumans
AT richardjdobson slc2a9isahighcapacityuratetransporterinhumans
AT chriswallace slc2a9isahighcapacityuratetransporterinhumans
AT stephenjnewhouse slc2a9isahighcapacityuratetransporterinhumans
AT morrisbrown slc2a9isahighcapacityuratetransporterinhumans
AT johnmconnell slc2a9isahighcapacityuratetransporterinhumans
AT annadominiczak slc2a9isahighcapacityuratetransporterinhumans
AT martinfarrall slc2a9isahighcapacityuratetransporterinhumans
AT gmarklathrop slc2a9isahighcapacityuratetransporterinhumans
AT nileshjsamani slc2a9isahighcapacityuratetransporterinhumans
AT meenakumari slc2a9isahighcapacityuratetransporterinhumans
AT michaelmarmot slc2a9isahighcapacityuratetransporterinhumans
AT ericbrunner slc2a9isahighcapacityuratetransporterinhumans
AT johnchambers slc2a9isahighcapacityuratetransporterinhumans
AT paulelliott slc2a9isahighcapacityuratetransporterinhumans
AT jaspalkooner slc2a9isahighcapacityuratetransporterinhumans
AT marislaan slc2a9isahighcapacityuratetransporterinhumans
AT elinorg slc2a9isahighcapacityuratetransporterinhumans
AT elinorg slc2a9isahighcapacityuratetransporterinhumans
AT gudrunveldre slc2a9isahighcapacityuratetransporterinhumans
AT margusviigimaa slc2a9isahighcapacityuratetransporterinhumans
AT francescopcappuccio slc2a9isahighcapacityuratetransporterinhumans
AT chenji slc2a9isahighcapacityuratetransporterinhumans
AT robertoiacone slc2a9isahighcapacityuratetransporterinhumans
AT pasqualestrazzullo slc2a9isahighcapacityuratetransporterinhumans
AT kellehmoley slc2a9isahighcapacityuratetransporterinhumans
AT chrischeeseman slc2a9isahighcapacityuratetransporterinhumans
_version_ 1721374541146488832