Barrionuevo P, Beigier-Bompadre M, Fernandez G C, Gomez S, Alves-Rosa M F, Palermo M S, Isturiz M A
CONICET, División Inmunología, Instituto de Investigaciones Hematológicas, Academia Nacional de Medicina, Buenos Aires, Argentina.
Clin Exp Immunol. 2003 Aug;133(2):200-7. doi: 10.1046/j.1365-2249.2003.02208.x.
The interaction between receptors for the Fc portion of IgG (FcgammaRs) from monocytes/macrophages and immune complexes (IC) triggers regulatory and effector functions. Recently, we have demonstrated that IC exert a drastic inhibition of basal and IFN-gamma-induced expression of MHC class II on human monocytes. Taking into account that the regulation of MHC class II molecules is a crucial event in the immune response, in this report we extend our previous studies analysing the effect of STAT-1 phosphorylation in the down-regulatory process, the fate of the intracellular pool of MHC class II molecules and the effect of complement on MHC class II down-regulation induced by IC. We also studied the effect of IC on the expression of MHC class II (I-A(d)) in macrophages using a mouse model of chronic inflammation. We demonstrate that IC induce a depletion not only on surface expressed but also on intracellular MHC class II content and that IC-induced down-regulation of MHC class II is not mediated by the inhibition of STAT-1 phosphorylation. On the other hand, the effect of IC is not specific for the down-regulation of MHC class II, for it could be restricted to other molecules involved in inflammatory processes. Our experiments also show that the activation of the complement system could be a crucial step on the regulation of the effect of IC on MHC class II expression. In agreement with our in vitro experiments using human monocytes, IC treatment reduces the expression of MHC class II in a mouse model of chronic inflammation.
单核细胞/巨噬细胞的IgG Fc段受体(FcγRs)与免疫复合物(IC)之间的相互作用触发调节和效应功能。最近,我们已经证明IC对人单核细胞上MHC II类分子的基础表达和IFN-γ诱导的表达具有强烈抑制作用。鉴于MHC II类分子的调节是免疫反应中的关键事件,在本报告中,我们扩展了先前的研究,分析STAT-1磷酸化在下调过程中的作用、MHC II类分子细胞内池的命运以及补体对IC诱导的MHC II类下调的影响。我们还使用慢性炎症小鼠模型研究了IC对巨噬细胞中MHC II类分子(I-A(d))表达的影响。我们证明IC不仅诱导表面表达的MHC II类分子耗竭,还诱导细胞内MHC II类分子含量耗竭,并且IC诱导的MHC II类下调不是由STAT-1磷酸化的抑制介导的。另一方面,IC的作用并非特异性针对MHC II类分子的下调,因为它可能仅限于参与炎症过程的其他分子。我们的实验还表明,补体系统的激活可能是调节IC对MHC II类表达影响的关键步骤。与我们使用人单核细胞的体外实验一致,IC处理在慢性炎症小鼠模型中降低了MHC II类分子的表达。