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转导细胞激活信号的含酪氨酸基序还通过IgG的III型受体决定内化作用和抗原呈递。

Tyrosine-containing motif that transduces cell activation signals also determines internalization and antigen presentation via type III receptors for IgG.

作者信息

Amigorena S, Salamero J, Davoust J, Fridman W H, Bonnerot C

机构信息

Laboratoire d'Immunologie Cellulaire et Clinique, INSERM U255, Institut Curie, Paris, France.

出版信息

Nature. 1992 Jul 23;358(6384):337-41. doi: 10.1038/358337a0.

Abstract

Type III receptors for IgG (Fc gamma RII; ref. 1), high-affinity IgE receptors (Fc epsilon RI; ref. 2), as well as the T- and B-cell antigen receptors, consist of multiple components with specialized ligand-binding and signal transduction functions. Fc gamma RII alpha (ligand-binding) and gamma (signal-transducing) subunits are expressed in macrophages, a cell type involved in the uptake of antigen, its processing and the presentation of the resulting peptides to major histocompatibility complex class II-restricted T lymphocytes. Here we show that murine Fc gamma RIII, transfected into Fc gamma R-negative antigen-presenting B-lymphoma cells, mediate rapid ligand internalization and strongly increase the efficiency of antigen presentation when antigen is complexed to IgG. Efficient internalization and antigen presentation via Fc gamma RIII did not require the cytoplasmic domain of the ligand-binding alpha-chain, but did require the gamma-subunit. Using chimaeric molecules, we show that gamma-chain contains a signal for receptor internalization and that the mutation of either of the two tyrosine residues present in its cytoplasmic domain prevents efficient internalization and antigen presentation of immune complexes. Thus, associated chains and their tyrosine-containing motif are not exclusively involved in cell activation, but also determine multimeric receptor internalization.

摘要

IgG的III型受体(FcγRII;参考文献1)、高亲和力IgE受体(FcεRI;参考文献2)以及T细胞和B细胞抗原受体,均由具有特定配体结合和信号转导功能的多个组分组成。FcγRIIα(配体结合)亚基和γ(信号转导)亚基在巨噬细胞中表达,巨噬细胞是一种参与抗原摄取、加工以及将产生的肽段呈递给主要组织相容性复合体II类限制性T淋巴细胞的细胞类型。在此我们表明,转染到FcγR阴性抗原呈递B淋巴瘤细胞中的小鼠FcγRIII,在抗原与IgG复合时介导快速的配体内吞作用,并显著提高抗原呈递效率。通过FcγRIII进行的高效内吞作用和抗原呈递不需要配体结合α链的胞质结构域,但需要γ亚基。利用嵌合分子,我们表明γ链含有受体内化信号,并且其胞质结构域中存在的两个酪氨酸残基中的任何一个发生突变都会阻止免疫复合物的有效内化和抗原呈递。因此,相关链及其含酪氨酸基序不仅专门参与细胞活化,还决定多聚体受体的内化。

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