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肥大细胞中含酪氨酸激活基序依赖性吞噬作用

Tyrosine-containing activation motif-dependent phagocytosis in mast cells.

作者信息

Daëron M, Malbec O, Bonnerot C, Latour S, Segal D M, Fridman W H

机构信息

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

出版信息

J Immunol. 1994 Jan 15;152(2):783-92.

PMID:8283051
Abstract

FcR capable of triggering cell activation share with BCR and TCR a conserved intracytoplasmic tyrosine-containing activation motif (TAM). Besides cell activation, these receptors trigger other biologic responses, such as endocytosis of soluble ligands. Murine mast cells express two types of FcR that, when aggregated by antibodies and multivalent Ag, trigger the release of inflammatory mediators and cytokines. These are high affinity receptors for IgE (Fc epsilon RI) and low affinity receptors for IgG (Fc gamma RIII). They comprise each an IgE- or IgG-binding alpha-subunit and two TAM-containing subunits that associate with both receptors: a beta-subunit and a homodimeric gamma-subunit that can associate also with the other subunits of the TCR. Herein, we focused on biologic activities triggered in mast cells via the TAM of the gamma-subunits. Using rat basophilic leukemia (RBL) cells stably transfected with cDNA-encoding murine Fc gamma RIII alpha, we found that murine Fc gamma RIII trigger the phagocytosis of antibody-coated erythrocytes. Using RBL transfectants expressing Fc gamma RIII with a deletion of the intracytoplasmic domain of Fc gamma RIII alpha or chimeric receptors having the extracellular and transmembrane domains of Fc gamma RII and the intracytoplasmic domain of Fc gamma RIII alpha, we showed that intracytoplasmic sequences of Fc gamma RIII alpha are neither necessary nor sufficient for Fc gamma RIII to trigger phagocytosis. Using RBL transfectants expressing chimeric receptors having the extracellular and transmembrane domains of Fc gamma RII and the TAM-containing intracytoplasmic domain of murine Fc gamma RIII gamma, we demonstrated that intracytoplasmic sequences of Fc gamma RIII gamma are sufficient to trigger phagocytosis. Using RBL transfectants expressing the same Fc gamma RII-III gamma chimeras, in the TAM of which one, the other, or both tyrosine residues were mutated, we established that tyrosines in the TAM sequence are required for phagocytosis. Our results endow TAM gamma with previously unknown triggering capacities and Fc gamma RIII with new biologic properties.

摘要

能够触发细胞活化的FcR与BCR和TCR一样,都具有保守的含酪氨酸胞质内活化基序(TAM)。除了细胞活化外,这些受体还能触发其他生物学反应,如可溶性配体的内吞作用。小鼠肥大细胞表达两种类型的FcR,当被抗体和多价抗原聚集时,会触发炎症介质和细胞因子的释放。它们分别是IgE的高亲和力受体(FcεRI)和IgG的低亲和力受体(FcγRIII)。它们各自包含一个结合IgE或IgG的α亚基和两个与这两种受体相关的含TAM的亚基:一个β亚基和一个同二聚体γ亚基,后者也可与TCR的其他亚基结合。在此,我们聚焦于通过γ亚基的TAM在肥大细胞中触发的生物学活性。利用稳定转染了编码小鼠FcγRIIIα的cDNA的大鼠嗜碱性白血病(RBL)细胞,我们发现小鼠FcγRIII可触发抗体包被红细胞的吞噬作用。利用表达缺失FcγRIIIα胞质内结构域的FcγRIII或具有FcγRII胞外和跨膜结构域以及FcγRIIIα胞质内结构域的嵌合受体的RBL转染细胞,我们表明FcγRIIIα的胞质内序列对于FcγRIII触发吞噬作用既非必需也不充分。利用表达具有FcγRII胞外和跨膜结构域以及小鼠FcγRIIIγ含TAM的胞质内结构域的嵌合受体的RBL转染细胞,我们证明FcγRIIIγ的胞质内序列足以触发吞噬作用。利用表达相同的FcγRII-IIIγ嵌合体(其中TAM中的一个、另一个或两个酪氨酸残基发生了突变)的RBL转染细胞,我们确定TAM序列中的酪氨酸对于吞噬作用是必需的。我们的结果赋予了TAMγ以前未知的触发能力,并赋予了FcγRIII新的生物学特性。

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