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肺泡巨噬细胞和腹膜巨噬细胞带有三类不同的IgG Fc受体。

Alveolar and peritoneal macrophages bear three distinct classes of Fc receptors for IgG.

作者信息

Anderson C L, Looney R J, Culp D J, Ryan D H, Fleit H B, Utell M J, Frampton M W, Manganiello P D, Guyre P M

机构信息

Department of Internal Medicine, Ohio State University College of Medicine, Columbus 43210.

出版信息

J Immunol. 1990 Jul 1;145(1):196-201.

PMID:2141614
Abstract

The FcR for IgG on the plasma membrane of cells of the mononuclear phagocyte system mediate a number of different biologic responses such as phagocytosis, pinocytosis, superoxide generation, and antibody-dependent cytotoxicity. In the interest of understanding the pathophysiology of these processes we have begun to characterize the FcR for IgG on two readily available sources of macrophages--the lung and the peritoneum--using antireceptor mAb. We find that all three of the distinct classes of FcR for IgG which have been described in man are present on both pulmonary and peritoneal macrophages. Most monocytes, we suggest, bear low numbers of Fc gamma RIII whereas a small subpopulation of monocytes expresses substantial numbers of Fc gamma RIII. Furthermore, we find that two different forms of Fc gamma RIII differ in their capacity to bind anti-Fc gamma RIII mab 3G8 in the presence of human IgG. Human IgG does not block the binding of mAb 3G8 to neutrophils, but it does block 3G8 binding to macrophages and large granular lymphocytes; this finding correlates with the expression of the two Fc gamma RIII genes, I and II, in man. Studies aimed at illuminating the molecular mechanisms of Fc gamma R-mediated processes in macrophages will require consideration of the receptors of all three classes.

摘要

单核吞噬细胞系统细胞质膜上的IgG Fc受体介导多种不同的生物学反应,如吞噬作用、胞饮作用、超氧化物生成和抗体依赖性细胞毒性。为了了解这些过程的病理生理学,我们已开始利用抗受体单克隆抗体,对两种易于获取的巨噬细胞来源——肺和腹膜——上的IgG Fc受体进行特性分析。我们发现,人类已描述的所有三种不同类型的IgG Fc受体在肺巨噬细胞和腹膜巨噬细胞上均有表达。我们认为,大多数单核细胞携带少量的FcγRIII,而一小部分单核细胞亚群表达大量的FcγRIII。此外,我们发现,在存在人IgG的情况下,两种不同形式的FcγRIII在结合抗FcγRIII单克隆抗体3G8的能力上存在差异。人IgG不会阻断单克隆抗体3G8与中性粒细胞的结合,但会阻断3G8与巨噬细胞和大颗粒淋巴细胞的结合;这一发现与人类中两个FcγRIII基因I和II的表达相关。旨在阐明巨噬细胞中FcγR介导过程的分子机制的研究将需要考虑所有三种类型的受体。

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