Epigenome-wide association study of serum urate reveals insights into urate co-regulation and the SLC2A9 locus
Milani Lili; März Winfried; Wolffenbuttel Bruce H. R.; Kasela Silva; Hemani Gibran; Hwang Shih-Jen; Völker Uwe; Mishra Pashupati P.; Chaker Layal; Henneman Peter; Waldenberger Melanie; Smith Jennifer A.; Herder Christian; Koenig Wolfgang; Baccarelli Andrea; Matias-Garcia Pamela R.; Kooner Jaspal S.; Thio Chris H. L.; Liu Dan; Stringhini Silvia; Breteler Monique M. B.; Bochud Murielle; Ghanbari Mohsen; Tin Adrienne; Köttgen Anna; Fraszczyk Eliza; Gelber Allan C.; Corre Tanguy; Yu Zhi; Venema Andrea; Kardia Sharon L. R.; Woodward Owen M.; van Vliet-Ostaptchouk Jana V.; Greenland Philip; Liu Hongo; Sundström Johan; Loh Marie; Weihs Antoine; Aziz Nasir A.; Nauck Matthias; Harris Sarah E.; Levy Daniel; Raitakari Olli T.; Schöttker Ben; Kleber Marcus E.; Winkelmann Juliane; Brenner Hermann; Endlich Karlhans; Min Josine L.; Susztak Katalin; Stocker Hannah R.; Floyd James S.; Bressler Jan; Kuhns Victoria L. Halperin; Gao Xu; Lu Ake T.; Teumer Alexander; Gào Xīn; Lloyd-Jones Donald M.; Kronenberg Florian; Correa Adolfo; Gieger Christian; Snieder Harold; Coresh Josef; Adeyemo Adebowale A.; Sedaghat Sanaz; Grove Megan L.; Lind Lars; Schwartz Joel; Ghasemi Sahar; Kühnel Brigitte; Meeks Karlijn A. C.; McCartney Daniel L.; Psaty Bruce M.; Zhao Wei; Ratliff Scott M.; Lorkowski Stefan; Marioni Riccardo E.; Schlosser Pascal; Hoppmann Anselm; van Meurs Joyce B. J.; Swenson Brenton R.; Reiner Alex P.; Ladd-Acosta Christine; Zheng Yinan; Nowak Christoph; Grundner-Culemann Franziska; Ekici Arif B.; Lehtimäki Terho; Agyemang Charles; Horvath Steve; Peters Annette; Ärnlöv Johan; Hurme Mikko A.; Eckardt Kai-Uwe; Hou Lifang; Akilesh Shreeram; Carmeli Cristian; Delgado Graciela E.; Sotoodehnia Nona; Prokisch Holger; Cox Simon R.; Joehanes Roby
https://urn.fi/URN:NBN:fi-fe2022012710618
Tiivistelmä
Serum urate concentration can be studied in large datasets to find genetic and epigenetic loci that may be related to cardiometabolic traits. Here the authors identify and replicate 100 urate-associated CpGs, which provide insights into urate GWAS loci and shared CpGs of urate and cardiometabolic traits.Elevated serum urate levels, a complex trait and major risk factor for incident gout, are correlated with cardiometabolic traits via incompletely understood mechanisms. DNA methylation in whole blood captures genetic and environmental influences and is assessed in transethnic meta-analysis of epigenome-wide association studies (EWAS) of serum urate (discovery, n = 12,474, replication, n = 5522). The 100 replicated, epigenome-wide significant (p < 1.1E-7) CpGs explain 11.6% of the serum urate variance. At SLC2A9, the serum urate locus with the largest effect in genome-wide association studies (GWAS), five CpGs are associated with SLC2A9 gene expression. Four CpGs at SLC2A9 have significant causal effects on serum urate levels and/or gout, and two of these partly mediate the effects of urate-associated GWAS variants. In other genes, including SLC7A11 and PHGDH, 17 urate-associated CpGs are associated with conditions defining metabolic syndrome, suggesting that these CpGs may represent a blood DNA methylation signature of cardiometabolic risk factors. This study demonstrates that EWAS can provide new insights into GWAS loci and the correlation of serum urate with other complex traits.
Kokoelmat
- Rinnakkaistallenteet [19207]