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与多价免疫复合物结合的巨噬细胞Fc受体的内化与降解

Internalization and degradation of macrophage Fc receptors bound to polyvalent immune complexes.

作者信息

Mellman I, Plutner H

出版信息

J Cell Biol. 1984 Apr;98(4):1170-7. doi: 10.1083/jcb.98.4.1170.

Abstract

We have studied the Fc receptor-mediated pinocytosis of immunoglobulin G (IgG)-containing immune complexes by mouse macrophages. IgG complexes were formed from affinity-purified rabbit dinitrophenyl IgG and dinitrophenyl modified BSA at molar ratios of 2.5-10:1. Both the specificity of binding and the fate of internalized receptors were analyzed using monoclonal and polyclonal anti-Fc receptor antibodies. Based on the susceptibility of surface-bound ligand to release by proteolysis, we have found that at 37 degrees C, 125I-labeled IgG complexes were rapidly internalized (t1/2 less than 2 min) and delivered to lysosomes; acid-soluble 125I was detectable in the growth medium within 5-10 min of uptake. However, kinetic evidence indicated that Fc receptors were not efficiently re-used for multiple rounds of ligand uptake. Instead, macrophages that were exposed continuously to saturating concentrations of IgG complexes exhibited a selective and largely irreversible removal of Fc receptors from the plasma membrane. This loss of surface receptors correlated with an increased rate of receptor turnover, determined by immune precipitation of Fc receptors from 125I-labeled macrophages. Thus, in contrast to the results obtained in the accompanying paper (I. Mellman, H. Plutner, and P. Ukkonen, 1984, J. Cell Biol. 98:1163-1169) using a monovalent ligand, these data indicate that the interaction of Fc receptors with polyvalent complexes leads to the degradation of both ligand and receptor following their delivery to lysosomes.

摘要

我们研究了小鼠巨噬细胞通过Fc受体介导的含免疫球蛋白G(IgG)免疫复合物的胞饮作用。IgG复合物由亲和纯化的兔二硝基苯基IgG和二硝基苯基修饰的牛血清白蛋白(BSA)以2.5 - 10:1的摩尔比形成。使用单克隆和多克隆抗Fc受体抗体分析了结合的特异性和内化受体的命运。基于表面结合配体对蛋白水解释放的敏感性,我们发现,在37℃时,125I标记的IgG复合物迅速内化(t1/2小于2分钟)并被递送至溶酶体;摄取后5 - 10分钟内,在生长培养基中可检测到酸溶性125I。然而,动力学证据表明,Fc受体不能有效地用于多轮配体摄取。相反,持续暴露于饱和浓度IgG复合物的巨噬细胞表现出从质膜选择性且在很大程度上不可逆地去除Fc受体。这种表面受体的丢失与受体周转率的增加相关,受体周转率通过从125I标记的巨噬细胞中免疫沉淀Fc受体来确定。因此,与随附论文(I. Mellman、H. Plutner和P. Ukkonen,1984,《细胞生物学杂志》98:1163 - 1169)中使用单价配体获得的结果相反,这些数据表明Fc受体与多价复合物的相互作用导致配体和受体在被递送至溶酶体后均被降解。

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