Weinshank R L, Luster A D, Ravetch J V
Dewitt Wallace Research Laboratory, Memorial Sloan-Kettering Cancer Center, New York, New York 10021.
J Exp Med. 1988 Jun 1;167(6):1909-25. doi: 10.1084/jem.167.6.1909.
Ligand binding specificities of two cloned murine Fc gamma Rs (Fc gamma R-alpha, Fc gamma R-beta [9]) were determined by gene transfer into Fc gamma R negative cell lines. Both receptors were expressed as full-length molecules capable of IgG immune complex binding that was inhibitable by the mAb 2.4G2. The ligand binding profiles of these receptors were indistinguishable whereby both bound immune-complexed mouse IgG1, IgG2a, and IgG2b, but not IgG3. Neither receptor could bind monomeric IgG2a, indicating these receptors to be low-affinity IgG Fc receptors. Accumulation of the Fc gamma R-alpha mRNA can be induced with murine IFN-gamma at a concentration of 200 U/ml in the macrophage-like cell lines RAW 264.7 and J774a. The time course for induction indicates that the mRNA accumulation is transient but does not return to the uninduced level even after 50 h of treatment. Fc gamma R-beta mRNA was not induced by IFN-gamma, rather its expression was down modulated in mouse peritoneal macrophages. Both RAW and J774a cells lines exhibited increased receptor levels after IFN-gamma stimulation as measured by 125I-2.4G2 and ligand binding. In the absence of IFN-gamma, the RAW and J774a cell lines were minimally phagocytic, while P388D1 cells were actively phagocytic. In the presence of IFN-gamma, however, RAW 264.7 and J774a cells were induced to become actively phagocytic. Induction of Fc gamma R-alpha mRNA and protein by IFN-gamma may be part of the process by which macrophages become activated to engulf antibody-coated particles.
通过将基因导入FcγR阴性细胞系,测定了两种克隆的小鼠FcγR(FcγR-α、FcγR-β [9])的配体结合特异性。两种受体均表达为能够结合IgG免疫复合物的全长分子,该结合可被单克隆抗体2.4G2抑制。这些受体的配体结合谱无法区分,二者均结合免疫复合物形式的小鼠IgG1、IgG2a和IgG2b,但不结合IgG3。两种受体均不能结合单体IgG2a,表明这些受体是低亲和力IgG Fc受体。在巨噬细胞样细胞系RAW 264.7和J774a中,浓度为200 U/ml的小鼠干扰素-γ可诱导FcγR-α mRNA的积累。诱导的时间进程表明,mRNA的积累是短暂的,即使在处理50小时后也不会恢复到未诱导水平。干扰素-γ未诱导FcγR-β mRNA,相反,其在小鼠腹腔巨噬细胞中的表达被下调。通过125I-2.4G2和配体结合测定,RAW和J774a细胞系在干扰素-γ刺激后均表现出受体水平升高。在没有干扰素-γ的情况下,RAW和J774a细胞系的吞噬作用极低,而P388D1细胞则具有活跃的吞噬作用。然而,在有干扰素-γ存在的情况下,RAW 264.7和J774a细胞被诱导变得具有活跃的吞噬作用。干扰素-γ诱导FcγR-α mRNA和蛋白可能是巨噬细胞被激活以吞噬抗体包被颗粒过程的一部分。