小鼠低亲和力Fc受体对IgG的生物学活性

Bonnerot Christian, Daëron Marc
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引用次数: 11

摘要

小鼠IgG低亲和力Fc受体(Fcγ riibl, Fcγ riib2和Fcγ riii)结合相同的IgG亚类,并且不被可用的抗Fcγ rii /III单克隆抗体区分(2.4G2)。它们引发各种生物活动,其中包括可溶性和颗粒性免疫复合物的内化,细胞活化及其调控。为了确定这三种小鼠受体的生物学特性,分别在小鼠淋巴瘤B细胞IIA1.6和大鼠嗜碱性白血病细胞RBL-2H3两种模型细胞中稳定转染相应的cdna进行表达。在不表达FcγR的IIA1.6细胞中,用可溶性免疫复合物或2.4G2 IgG触发重组受体的生物活性,在表达大鼠FcγR的RBL中,用2.4G2 Fab或与小鼠抗大鼠F(ab’)2交联的F(ab’)2触发重组受体的生物活性。描述了两种细胞模型中研究细胞活化和内吞作用的条件,以及研究RBL细胞吞噬作用和IIA1.6细胞中抗原呈递或细胞活化调节的条件。fc - γ riib2和fc - γ riii可触发免疫复合物内化,而fc - γ riib1不能。在FcγRIIb2中可以区分吞噬和内吞所需的胞质内序列,而在FcγRIII中则没有。细胞活化仅限于fc - γ - riii。fc γ γ riii介导的内吞作用、吞噬作用和细胞活化涉及在γ亚基胞质内结构域发现的一致的含酪氨酸激活基序。两种fc - γ - rii异构体均可诱导细胞活化,并依赖于与内吞作用相同的序列。因此,单个基序可以决定细胞的一种以上的生物反应,并且一个给定的反应可能由几个基序触发,由不同的FcγR承担。
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Biological Activities of Murine Low-Affinity Fc Receptors for IgG

Murine low-affinity Fc receptors for IgG (FcγRIIbl, FcγRIIb2, and FcγRIII) bind the same IgG subclasses and are not distinguished by available anti-FcγRII/III mAbs (2.4G2). They trigger various biological activities, among which are the internalization of soluble and particulate immune complexes, cell activation, and its regulation. To determine the biological properties of the three murine receptors, each was expressed by stable transfection of corresponding cDNAs in two model cells: the murine lymphoma B cell IIA1.6 and the rat basophilic leukemia cell RBL-2H3. Biological activities of recombinant receptors were triggered with soluble immune complexes or 2.4G2 IgG in IIA1.6 cells, which express no FcγR, and with 2.4G2 Fab or F(ab′)2, cross-linked with mouse anti-rat F(ab′)2 in RBL, which express rat FcγR. Conditions for studying cell activation and endocytosis in both cell models are described, as are conditions for studying phagocytosis in RBL cells and antigen presentation or regulation of cell activation in IIA1.6 cells. Internalization of immune complexes was triggered by FcγRIIb2 and FcγRIII, but not by FcγRIIb1. Intracytoplasmic sequences required for phagocytosis and endocytosis could be distinguished in FcγRIIb2, but not in FcγRIII. Cell activation was restricted to FcγRIII. FcγRIII-mediated endocytosis, phagocytosis, and cell activation involved the consensus tyrosine-containing activation motif found in the intracytoplasmic domain of the γ subunit. Regulation of cell activation was induced by both FcγRII isoforms and depended on the same sequence as endocytosis. As a consequence, a single motif can determine more than one biological response of the cell, and a given response may be triggered by several motifs, borne by different FcγR.

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