Bournazos Stylianos, Hart Simon P, Chamberlain Luke H, Glennie Martin J, Dransfield Ian
University of Edinburgh/Medical Research Council Centre for Inflammation Research, Queen's Medical Research Institute, Edinburgh, UK.
J Immunol. 2009 Jun 15;182(12):8026-36. doi: 10.4049/jimmunol.0900107.
Binding of Igs to myeloid cells via FcR is a key event in the control of innate and acquired immunity. FcgammaRIIa (CD32a) is a receptor for multivalent IgG expressed predominantly by myeloid cells, and its association with microdomains rich in cholesterol and sphingolipids, termed as lipid rafts, has been reported to be essential for efficient signaling. However, for many myeloid cell types, ligand binding to CD32a is suppressed by as yet undefined mechanisms. In this study, we have examined the role of CD32a-lipid raft interactions in the regulation of IgG binding to CD32a. Disruption of lipid raft structure following depletion or sequestration of membrane cholesterol greatly inhibited CD32a-mediated IgG binding. Furthermore, specific CD32a mutants, which show reduced association with lipid rafts (A224S and C241A), displayed decreased levels of IgG binding compared with wild-type CD32a. In contrast, constitutively lipid raft-associated CD32a (GPI-anchored CD32a) exhibited increased capacity for IgG binding compared with the full-length transmembrane CD32a. Our findings clearly suggest a major role for lipid rafts in the regulation of IgG binding and, more specifically, that suppression of CD32a-mediated IgG binding in myeloid cells is achieved by receptor exclusion from lipid raft membrane microdomains.
免疫球蛋白(Igs)通过Fc受体与髓样细胞结合是控制先天性和获得性免疫的关键事件。FcγRIIa(CD32a)是一种主要由髓样细胞表达的多价IgG受体,据报道,它与富含胆固醇和鞘脂的微结构域(称为脂筏)的结合对于有效信号传导至关重要。然而,对于许多髓样细胞类型,配体与CD32a的结合被尚未明确的机制所抑制。在本研究中,我们研究了CD32a-脂筏相互作用在调节IgG与CD32a结合中的作用。膜胆固醇耗尽或隔离后脂筏结构的破坏极大地抑制了CD32a介导的IgG结合。此外,与脂筏结合减少的特定CD32a突变体(A224S和C241A)与野生型CD32a相比,IgG结合水平降低。相反,与全长跨膜CD32a相比,组成型脂筏相关的CD32a(糖基磷脂酰肌醇锚定的CD32a)表现出更高的IgG结合能力。我们的研究结果清楚地表明脂筏在调节IgG结合中起主要作用,更具体地说,髓样细胞中CD32a介导的IgG结合的抑制是通过受体从脂筏膜微结构域中排除来实现的。