Identification of a single killer immunoglobulin-like receptor (KIR) gene in the porcine leukocyte receptor complex on chromosome 6q
IMMUNOGENETICS
Authors: Sambrook, Jennifer G.; Sehra, Harminder; Coggill, Penny; Humphray, Sean; Palmer, Sophie; Sims, Sarah; Takamatsu, Haru-Hisa; Wileman, Thomas; Archibald, Alan L.; Beck, Stephan
Abstract
Human killer immunoglobulin-like receptors (KIR) are expressed on natural killer (NK) cells and are involved in their immunoreactivity. While KIR with a long cytoplasmic tail deliver an inhibitory signal when bound to their respective major histocompatibility complex class I ligands, KIR with a short cytoplasmic tail can activate NK responses. The expansion of the KIR gene family originally appeared to be a phenomenon restricted to primates (human, apes, and monkeys) in comparison to rodents, which via convergent evolution have numerous C-type lectin-like Ly49 molecules that function analogously. Further studies have shown that multiple KIR are also present in cow and horse. In this study, we have identified by comparative genomics the first and possibly only KIR gene, named KIR2DL1, in the domesticated pig (Sus scrofa) allowing further evolutionary comparisons to be made. It encodes a protein with two extracellular immunoglobulin domains (D0 + D2), and a long cytoplasmic tail containing two inhibitory motifs. We have mapped the pig KIR2DL1 gene to chromosome 6q. Flanked by LILRa, LILRb, and LILRc, members of the leukocyte immunoglobulin-like receptor (LILR) family, on the centromeric end, and FCAR, NCR1, NALP7, NALP2, and GP6 on the telomeric end, pig demonstrates conservation of synteny with the human leukocyte receptor complex (LRC). Both the porcine KIR and LILR genes have diverged sufficiently to no longer be clearly orthologous with known human LRC family members.
Monocyte chemoattractant protein (MCP)-1 production via functionally reconstituted Fc alpha receptor (CD89) on glomerular mesangial cells
INFLAMMATION RESEARCH
Authors: Tsuge, T; Suzuki, I; Shimokawa, T; Horikoshi, S; Okumura, K; Ra, C; Tomino, Y
Abstract
Background: Fc alpha receptor (FcalphaR; CD89) is the receptor for Fc portion of IgA in various cells, and displays various immunological responses on binding. It is important to analyze the mesangial functions via FcaR in the pathogenesis of IgA nephropathy. However, it is still controversial whether FcaR is expressed on mesangial cells. To assess biological functions of FcaR on the mesangial cells, we established mesangial transfectants that expressed FcaR with or without FcRgamma chain that is a common signaling molecule of FcRs. The production of monocyte chemoattractant protein-1 (MCP-1) by mesangial cells is known to contribute to cellular infiltration into glomeruli and subsequent glomerular injuries. Methods: Murine mesangial cell lines (SV40 MES 13) were transfected with cDNA of the human FcaR. Furthermore, we co-transfected some of the FcaR transfectants with cDNA of human FcRgamma chain. The tyrosine phosphorylation of the infra-mesangial proteins after FcaR cross-linking was examined by immunoprecipitation. MCP-1 production from each transfectant stimulated with heat aggregated IgA was determined by sandwich ELISA. Results: Two kinds of mesangial transfectants stably expressed human FcaR with or without FcRgamma chain (FcalphaR(+), FcalphaR(+)/gamma(+)). Phosphorylation of FcRgamma chain and syk kinase was detected in FcalphaR(+) and FcalphaR(+)/gamma(+) cells, but not in untransfected cells. Aggregated IgA induced significantly higher MCP-1 production in FcalphaR(+)/gamma(+) than those in FcalphaR(+) or untransfected control. Conclusion: Present study demonstrated that FcalphaR and FcRgamma chain could be reconstituted in mesangial cells and mediated MCP-1 production by aggregated IgA in a dose-dependent manner. Current data would argue that FcalphaR can be activated in mesangial cells through their own machinery, although underlying mechanisms for FcalphaR induction in mesangial cells remain unclear.