Ekici Rifat, Sundström Mia, Thay Bernard, Lejon Kristina
Department of Clinical Microbiology, Division of Immunology, Umeå University, SE-901 87 Umeå, Sweden.
Int Immunol. 2009 May;21(5):533-41. doi: 10.1093/intimm/dxp024. Epub 2009 Mar 19.
Binding of various antibody isotypes to B cells through either FcgammaRs or complement receptors has been attributed to play several roles, e.g. in immune complex (IC) transportation and regulation of B cell receptor signaling. We have revealed a novel B cell intrinsic receptor for IgM and IgG which is present in C57BL/6 (B6) mice and is more abundant in non-obese diabetic (NOD) mice. As a consequence, the level of extramembranous IgG monomers and IgM pentamers on peripheral blood B cells from NOD mice was significantly higher compared with B6 mice. The effect of this aberration was that all B cells in peripheral blood of (NOD.IgH(a) x B6(IgH(b)))F(1) mice carried both IgM allotypes on their surface. In addition, analysis of IC binding using IgG- or IgM-opsonized bacterial particles revealed a higher degree of binding in NOD mice compared with B6. We hypothesize that this novel Ig-binding receptor is part of the normal immune system function. The aberrant function in the NOD mouse could contribute to the development of Type 1 diabetes by altering normal B cell functions such as activation, IC transportation and B cell homeostasis.
各种抗体同种型通过Fcγ受体或补体受体与B细胞结合,被认为发挥多种作用,例如在免疫复合物(IC)运输和B细胞受体信号传导调节中。我们发现了一种存在于C57BL/6(B6)小鼠中且在非肥胖糖尿病(NOD)小鼠中更为丰富的新型B细胞固有IgM和IgG受体。因此,与B6小鼠相比,NOD小鼠外周血B细胞上的膜外IgG单体和IgM五聚体水平显著更高。这种异常的影响是,(NOD.IgH(a)×B6(IgH(b)))F(1)小鼠外周血中的所有B细胞表面都携带两种IgM同种异型。此外,使用IgG或IgM调理的细菌颗粒进行的IC结合分析显示,与B6相比,NOD小鼠中的结合程度更高。我们推测这种新型Ig结合受体是正常免疫系统功能的一部分。NOD小鼠中的异常功能可能通过改变正常B细胞功能,如激活、IC运输和B细胞稳态,促进1型糖尿病的发展。