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Allelic heterogeneity in NCF2 associated with systemic lupus erythematosus (SLE) susceptibility across four ethnic populationsopen access

Authors
Kim-Howard, XanaSun, CeliMolineros, Julio E.Maiti, Amit K.Chandru, HemaAdler, AdamWiley, Graham B.Kaufman, Kenneth M.Kottyan, LeahGuthridge, Joel M.Rasmussen, AstridKelly, JenniferSanchez, ElenaRaj, PrithviLi, Quan-ZhenBang, So-YoungLee, Hye-SoonKim, Tae-HwanKang, Young MoSuh, Chang-HeeChung, Won TaePark, Yong-BeomChoe, Jung-YoonShim, Seung CheolLee, Shin-SeokHan, Bok-GheeOlsen, Nancy J.Karp, David R.Moser, KathyPons-Estel, Bernardo A.Wakeland, Edward K.James, Judith A.Harley, John B.Bae, Sang-CheolGaffney, Patrick M.Alarcon-Riquelme, MartaLooger, Loren L.Nath, Swapan K.Acevedo, EduardoLa Torre, Ignacio Garcia-DeMaradiaga-Cecena, Marco A.Cardiel, Mario H.Esquivel-Valerio, Jorge A.Rodriguez-Amado, JacquelineMoctezuma, Jose FranciscoMiranda, PedroPerandones, CarlosCastel, CeciliaLaborde, Hugo A.Alba, PaulaMusuruana, JorgeGoecke, AnneliseFoster, CarolaOrozco, LorenaBaca, Vicente
Issue Date
Mar-2014
Publisher
OXFORD UNIV PRESS
Citation
HUMAN MOLECULAR GENETICS, v.23, no.6, pp.1656 - 1668
Indexed
SCIE
SCOPUS
Journal Title
HUMAN MOLECULAR GENETICS
Volume
23
Number
6
Start Page
1656
End Page
1668
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/26540
DOI
10.1093/hmg/ddt532
ISSN
0964-6906
Abstract
Recent reports have associated NCF2, encoding a core component of the multi-protein NADPH oxidase (NADPHO), with systemic lupus erythematosus (SLE) susceptibility in individuals of European ancestry. To identify ethnicity-specific and -robust variants within NCF2, we assessed 145 SNPs in and around the NCF2 gene in 5325 cases and 21 866 controls of European-American (EA), African-American (AA), Hispanic (HS) and Korean(KR) ancestry. Subsequent imputation, conditional, haplotype and bioinformatic analyses identified seven potentially functional SLE-predisposing variants. Association with non-synonymous rs17849502, previously reported in EA, was detected in EA, HS and AA (P-EA = 1.01 x 10(-54), P-HS = 3.68 x 10(-10), P-AA = 0.03); synonymous rs17849501 was similarly significant. These SNPs were monomorphic in KR. Novel associations were detected with coding variants at rs35937854 in AA (P-AA = 1.49 x 10(-9)), and rs13306575 in HS and KR (P-HS = 7.04 x 10(-7), P-KR = 3.30 x 10(-3)). In KR, a3-SNP haplotype was significantly associated (P 5 4.20 3 10 27), implying that SLE predisposing variants were tagged. Significant SNP-SNP interaction (P 5 0.02) was detected between rs13306575 and rs17849502 in HS, and adramatically increased risk(OR 5 6.55) with a risk allele at each locus. Molecular modeling predicts that these non-synonymous mutations could disrupt NADPHO complex assembly. The risk allele of rs17849501, located in a conserved transcriptional regulatory region, increased reporter gene activity, suggesting in vivo enhancer function. Our results not only establish allelic heterogeneity within NCF2 associated with SLE, but also emphasize the utility of multi-ethnic cohorts to identify predisposing variants explaining additional phenotypic variance ('missing heritability') of complex diseases like SLE.
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