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Cited 16 time in webofscience Cited 21 time in scopus
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Lupus risk variants in the PXK locus alter B-cell receptor internalizationopen access

Authors
Vaughn, Samuel E.Foley, CorinneLu, XiaomingPatel, Zubin H.Zoller, Erin E.Magnusen, Albert F.Williams, Adrienne H.Ziegler, Julie T.Comeau, Mary E.Marion, Miranda C.Glenn, Stuart B.Adler, AdamShen, NanNath, SwapanStevens, Anne M.Freedman, Barry I.Tsao, Betty P.Jacob, Chaim O.Kamen, Diane L.Brown, Elizabeth E.Gilkeson, Gary S.Alarcon, Graciela S.Reveille, John D.Anaya, Juan-ManuelJames, Judith A.Moser, Kathy L.Criswell, Lindsey A.Vila, Luis M.Alarcon-Riquelme, Marta E.Petri, MichelleScofield, R. HalKimberly, Robert P.Ramsey-Goldman, RosalindBinjoo, YoungChoi, JeongimBae, Sang-CheolBoackle, Susan A.Vyse, Timothy J.Guthridge, Joel M.Namjou, BahramGaffney, Patrick M.Langefeld, Carl D.Kaufman, Kenneth M.Kelly, Jennifer A.Harley, Isaac T. W.Harley, John B.Kottyan, Leah C.
Issue Date
Jan-2015
Publisher
FRONTIERS MEDIA SA
Keywords
B cells; BCR; Fine-mapping; Lupus; PXK
Citation
FRONTIERS IN GENETICS, v.5, no.DEC, pp.1 - 12
Indexed
SCIE
SCOPUS
Journal Title
FRONTIERS IN GENETICS
Volume
5
Number
DEC
Start Page
1
End Page
12
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/25680
DOI
10.3389/fgene.2014.00450
ISSN
1664-8021
Abstract
Genome wide association studies have identified variants in PXK that confer risk for humoral autoimmune diseases, including systemic lupus erythematosus (SLE or lupus), rheumatoid arthritis and more recently systemic sclerosis. While PXK is involved in trafficking of epidermal growth factor Receptor (EGFR) in COS-7 cells, mechanisms linking PXK to lupus pathophysiology have remained undefined. In an effort to uncover the mechanism at this locus that increases lupus-risk, we undertook a fine-mapping analysis in a large multi-ancestral study of lupus patients and controls. We define a large (257kb) common haplotype marking a single causal variant that confers lupus risk detected only in European ancestral populations and spans the promoter through the 3' UTR of PXK. The strongest association was found at rs6445972 with P < 4.62 x 10(-10), OR 0.81 (0.75-0.86). Using stepwise logistic regression analysis, we demonstrate that one signal drives the genetic association in the region. Bayesian analysis confirms our results, identifying a 95% credible set consisting of 172 variants spanning 202 kb. Functionally, we found that PXK operates on the B-cell antigen receptor (BCR); we confirmed that PXK influenced the rate of BCR internalization. Furthermore, we demonstrate that individuals carrying the risk haplotype exhibited a decreased rate of BCR internalization, a process known to impact B cell survival and cell fate. Taken together, these data define a new candidate mechanism for the genetic association of variants around PXK with lupus risk and highlight the regulation of intracellular trafficking as a genetically regulated pathway mediating human autoimmunity.
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