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巨噬细胞Fc受体及与Fc受体结合的配体向溶酶体的转运。

Transport of macrophage Fc receptors and Fc receptor-bound ligands to lysosomes.

作者信息

Ukkonen P, Lewis V, Marsh M, Helenius A, Mellman I

出版信息

J Exp Med. 1986 Apr 1;163(4):952-71. doi: 10.1084/jem.163.4.952.

Abstract

Mouse macrophage Fc receptors specific for IgG1/IgG2b mediate the binding and pinocytic uptake of soluble IgG-containing antibody-antigen complexes. Internalization of these multivalent IgG complexes is accompanied not only by the intracellular degradation of the ligand, but also by a net decrease in the number of plasma membrane Fc receptors and an accelerated rate of receptor turnover. In contrast, internalized receptors bound to a monovalent ligand, the high affinity Fab fragment of the antireceptor mAb 2.4G2, escape degradation by rapidly recycling to the cell surface. In this paper, we have characterized the intracellular pathway involved in the endocytosis and transport of Fc receptors in the J774 macrophage cell line. The results show that the uptake of multivalent ligands follows the normal pathway of receptor-mediated endocytosis: internalization in clathrin-coated pits and coated vesicles, delivery to endosomes, and finally to acid hydrolase-rich lysosomes. Immunoprecipitation of radiolabeled receptor from Percoll density gradients showed that endocytosis of the IgG complexes also results in the concomitant transport of the receptor to lysosomes. Although uptake of the monovalent Fab fragment had no detectable effect on intracellular receptor distribution, preparations of 2.4G2 Fab rendered multivalent by adsorption to colloidal gold were as effective as the IgG complexes at causing lysosomal accumulation of internalized receptors. Thus, it is likely that the down-regulation and degradation of Fc receptors which occurs during the endocytosis of antibody-antigen complexes is due to the transport of internalized receptors to lysosomes. Moreover, the ability of certain Fc receptor-bound ligands to interfere with receptor recycling and trigger lysosomal transport seems to depend on ligand valency rather than on the presence or absence of Fc domains on intact IgG molecules.

摘要

对IgG1/IgG2b具有特异性的小鼠巨噬细胞Fc受体介导了含可溶性IgG的抗体 - 抗原复合物的结合和胞饮摄取。这些多价IgG复合物的内化不仅伴随着配体在细胞内的降解,还伴随着质膜Fc受体数量的净减少以及受体周转速率的加快。相比之下,与单价配体(抗受体单克隆抗体2.4G2的高亲和力Fab片段)结合的内化受体通过迅速循环回到细胞表面而逃避降解。在本文中,我们表征了J774巨噬细胞系中Fc受体的内吞作用和运输所涉及的细胞内途径。结果表明,多价配体的摄取遵循受体介导的内吞作用的正常途径:在网格蛋白包被的小窝和包被小泡中内化,输送到内体,最后到达富含酸性水解酶的溶酶体。从Percoll密度梯度中对放射性标记受体进行免疫沉淀表明,IgG复合物的内吞作用也导致受体同时运输到溶酶体。虽然单价Fab片段的摄取对细胞内受体分布没有可检测到的影响,但通过吸附到胶体金上而变成多价的2.4G2 Fab制剂在导致内化受体的溶酶体积聚方面与IgG复合物一样有效。因此,抗体 - 抗原复合物内吞过程中发生的Fc受体下调和降解可能是由于内化受体运输到溶酶体所致。此外,某些与Fc受体结合的配体干扰受体循环并触发溶酶体运输的能力似乎取决于配体的价态,而不是完整IgG分子上Fc结构域的存在与否。

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本文引用的文献

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Endocytosis and the recycling of plasma membrane.内吞作用与质膜的循环利用
J Cell Biol. 1983 Jan;96(1):1-27. doi: 10.1083/jcb.96.1.1.

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