Copy number, linkage disequilibrium and disease association in the FCGR locus
HUMAN MOLECULAR GENETICS
Authors: Niederer, Heather A.; Willcocks, Lisa C.; Rayner, Tim F.; Yang, Wanling; Lau, Yu Lung; Williams, Thomas N.; Scott, J. Anthony G.; Urban, Britta C.; Peshu, Norbert; Dunstan, Sarah J.; Hien, Tran Tinh; Phu, Nguyen Hoan; Padyukov, Leonid; Gunnarsson, Iva; Svenungsson, Elisabet; Savage, Caroline O.; Watts, Richard A.; Lyons, Paul A.; Clayton, David G.; Smith, Kenneth G. C.
Abstract
The response of a leukocyte to immune complexes (ICs) is modulated by receptors for the Fc region of IgG (Fc gamma Rs), and alterations in their affinity or function have been associated with risk of autoimmune diseases, including systemic lupus erythematosus (SLE). The low-affinity Fc gamma R genomic locus is complex, containing regions of copy number variation (CNV) which can alter receptor expression and leukocyte responses to IgG. Combined paralogue ratio tests (PRTs) were used to distinguish three intervals within the FCGR locus which undergo CNV, and to determine FCGR gene copy number (CN). There were significant differences in FCGR3B and FCGR3A CNV profiles between Caucasian, East Asian and Kenyan populations. A previously noted association of low FCGR3B CN with SLE in Caucasians was supported [OR = 1.57 (1.08-2.27), P = 0.018], and replicated in Chinese [OR = 1.65 (1.25-2.18), P = 4 x 10(-4)]. There was no association of FCGR3B CNV with vasculitis, nor with malarial or bacterial infection. Linkage disequilibrium (LD) between multi-allelic FCGR3B CNV and SLE-associated SNPs in the FCGR locus was defined for the first time. Despite LD between FCGR3B CNV and a variant in Fc gamma RIIB (I232T) which abolishes inhibitory function, both reduced CN of FCGR3B and homozygosity of the Fc gamma RIIB-232T allele were individually strongly associated with SLE risk. Thus CN of FCGR3B, which controls IC responses and uptake by neutrophils, and variations in FCGR2B, which controls factors such as antibody production and macrophage activation, are important in SLE pathogenesis. Further interpretations of contributions to pathogenesis by Fc gamma Rs must be made in the context of LD involving CNV regions.
Long-Term Allograft Tolerance Is Characterized by the Accumulation of B Cells Exhibiting an Inhibited Profile
AMERICAN JOURNAL OF TRANSPLANTATION
Authors: Le Texier, L.; Thebault, P.; Lavault, A.; Usal, C.; Merieau, E.; Quillard, T.; Charreau, B.; Soulillou, J. P.; Cuturi, M. C.; Brouard, S.; Chiffoleau, E.
Abstract
Numerous reports have highlighted the central role of regulatory T cells in long-term allograft tolerance, but few studies have investigated the B-cell aspect. We analyzed the B-cell response in a rat model of long-term cardiac allograft tolerance induced by a short-term immunosuppression. We observed that tolerated allografts are infiltrated by numerous B cells organized in germinal centers that are strongly regulated in their IgG alloantibody response. Moreover, alloantibodies from tolerant recipients exhibit a deviation toward a Th2 isotype and do not activate in vitro donor-type endothelial cells in a pro-inflammatory way but maintained expression of cytoprotective molecules. Interestingly, this inhibition of the B-cell response is characterized by the progressive accumulation in the graft and in the blood of B cells blocked at the IgM to IgG switch recombination process and overexpressing BANK-1 and the inhibitory receptor Fcgr2b. Importantly, B cells from tolerant recipients are able to transfer allograft tolerance. Taken together, these results demonstrate a strong regulation of the alloantibody response in tolerant recipients and the accumulation of B cells exhibiting an inhibited and regulatory profile. These mechanisms of regulation of the B-cell response could be instrumental to develop new strategies to promote tolerance.