Kimberly R P, Tappe N J, Merriam L T, Redecha P B, Edberg J C, Schwartzman S, Valinsky J E
Department of Medicine, Hospital for Special Surgery, New York 10021.
J Immunol. 1989 Jun 1;142(11):3923-30.
To explore the molecular basis for the ability of aggregated IgG to block the phagocytosis by human polymorphonuclear leukocytes of Con A-opsonized E and of nonopsonized Escherichia coli with mannose-binding adhesins, we examined specific aspects of the glycoprotein structure of both the 40- to 43-kDa receptor for the Fc portion of IgG (Fc gamma RII) and the 50- to 78-kDa receptor for the Fc portion of IgG (Fc gamma RIIIPMN) from human polymorphonuclear leukocytes. Fc gamma RIIIPMN isolated by both mAb and ligand affinity chromatography, but not Fc gamma RII, binds Con A in Western blots. This binding is specifically inhibitable by alpha-methylmannoside. Digestion of Fc gamma RIIIPMN by recombinant endoglycosidase H, which is specific for high mannose-type (Con A-binding) oligosaccharides, alters the epitope recognized by mAb 3G8 in or near the IgG ligand-binding site of the receptor. Similarly, the ability of Fc gamma RIIIPMN to bind human IgG ligand is sensitive to endoglycosidase H digestion. Our data indicate that ligands other than the classical IgG opsonins can bind to human Fc gamma RIIIPMN per se through lectin-carbohydrate interactions. Furthermore, Fc gamma RIIIPMN contains a high mannose type oligosaccharide chain which contributes importantly to the integrity of the classical IgG ligand-binding site. Thus, specific glycosylations of the receptor are important for both classical and nonclassical engagement of Fc gamma RIII and may play a role in determining the properties of the ligand-binding site.
为了探究聚集的IgG能够阻断人多形核白细胞对伴刀豆球蛋白A调理的E以及带有甘露糖结合黏附素的未调理大肠杆菌的吞噬作用的分子基础,我们研究了来自人多形核白细胞的40至43 kDa IgG Fc段受体(FcγRII)和50至78 kDa IgG Fc段受体(FcγRIIIPMN)糖蛋白结构的特定方面。通过单克隆抗体和配体亲和层析分离得到的FcγRIIIPMN,而非FcγRII,在蛋白质免疫印迹中能结合伴刀豆球蛋白A。这种结合可被α-甲基甘露糖苷特异性抑制。用对高甘露糖型(结合伴刀豆球蛋白A的)寡糖具有特异性的重组内切糖苷酶H消化FcγRIIIPMN,会改变受体IgG配体结合位点内或其附近被单克隆抗体3G8识别的表位。同样,FcγRIIIPMN结合人IgG配体的能力对内切糖苷酶H消化敏感。我们的数据表明,除了经典的IgG调理素之外的配体可以通过凝集素-碳水化合物相互作用直接与人FcγRIIIPMN结合。此外,FcγRIIIPMN含有一条高甘露糖型寡糖链,它对经典IgG配体结合位点的完整性有重要贡献。因此,受体的特定糖基化对于FcγRIII的经典和非经典结合都很重要,并且可能在决定配体结合位点的特性中起作用。