Author:
Nakayama Akiyoshi,Nakaoka Hirofumi,Yamamoto Ken,Sakiyama Masayuki,Shaukat Amara,Toyoda Yu,Okada Yukinori,Kamatani Yoichiro,Nakamura Takahiro,Takada Tappei,Inoue Katsuhisa,Yasujima Tomoya,Yuasa Hiroaki,Shirahama Yuko,Nakashima Hiroshi,Shimizu Seiko,Higashino Toshihide,Kawamura Yusuke,Ogata Hiraku,Kawaguchi Makoto,Ohkawa Yasuyuki,Danjoh Inaho,Tokumasu Atsumi,Ooyama Keiko,Ito Toshimitsu,Kondo Takaaki,Wakai Kenji,Stiburkova Blanka,Pavelka Karel,Stamp Lisa K,Dalbeth Nicola,Sakurai Yutaka,Suzuki Hiroshi,Hosoyamada Makoto,Fujimori Shin,Yokoo Takashi,Hosoya Tatsuo,Inoue Ituro,Takahashi Atsushi,Kubo Michiaki,Ooyama Hiroshi,Shimizu Toru,Ichida Kimiyoshi,Shinomiya Nariyoshi,Merriman Tony R,Matsuo Hirotaka
Abstract
ObjectiveA genome-wide association study (GWAS) of gout and its subtypes was performed to identify novel gout loci, including those that are subtype-specific.MethodsPutative causal association signals from a GWAS of 945 clinically defined gout cases and 1213 controls from Japanese males were replicated with 1396 cases and 1268 controls using a custom chip of 1961 single nucleotide polymorphisms (SNPs). We also first conducted GWASs of gout subtypes. Replication with Caucasian and New Zealand Polynesian samples was done to further validate the loci identified in this study.ResultsIn addition to the five loci we reported previously, further susceptibility loci were identified at a genome-wide significance level (p<5.0×10−8): urate transporter genes (SLC22A12andSLC17A1) andHIST1H2BF-HIST1H4Efor all gout cases, andNIPAL1andFAM35Afor the renal underexcretion gout subtype. WhileNIPAL1encodes a magnesium transporter, functional analysis did not detect urate transport via NIPAL1, suggesting an indirect association with urate handling. Localisation analysis in the human kidney revealed expression of NIPAL1 and FAM35A mainly in the distal tubules, which suggests the involvement of the distal nephron in urate handling in humans. Clinically ascertained male patients with gout and controls of Caucasian and Polynesian ancestries were also genotyped, andFAM35Awas associated with gout in all cases. A meta-analysis of the three populations revealedFAM35Ato be associated with gout at a genome-wide level of significance (pmeta=3.58×10−8).ConclusionsOur findings including novel gout risk loci provide further understanding of the molecular pathogenesis of gout and lead to a novel concept for the therapeutic target of gout/hyperuricaemia.
Subject
General Biochemistry, Genetics and Molecular Biology,Immunology,Immunology and Allergy,Rheumatology