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gp49B1通过基于免疫受体酪氨酸的抑制基序、招募含src同源2结构域的磷酸酶-1以及抑制早期和晚期钙动员来抑制IgE启动的肥大细胞活化。

gp49B1 inhibits IgE-initiated mast cell activation through both immunoreceptor tyrosine-based inhibitory motifs, recruitment of src homology 2 domain-containing phosphatase-1, and suppression of early and late calcium mobilization.

作者信息

Lu-Kuo J M, Joyal D M, Austen K F, Katz H R

机构信息

Department of Medicine, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 1999 Feb 26;274(9):5791-6. doi: 10.1074/jbc.274.9.5791.

Abstract

We define by molecular, pharmacologic, and physiologic approaches the proximal mechanism by which the immunoglobulin superfamily member gp49B1 inhibits mast cell activation mediated by the high affinity Fc receptor for IgE (FcepsilonRI). In rat basophilic leukemia-2H3 cells expressing transfected mouse gp49B1, mutation of tyrosine to phenylalanine in either of the two immunoreceptor tyrosine-based inhibitory motifs of the gp49B1 cytoplasmic domain partially suppressed gp49B1-mediated inhibition of exocytosis, whereas mutation of both abolished inhibitory capacity. Sodium pervanadate elicited tyrosine phosphorylation of native gp49B1 and association of the tyrosine phosphatases src homology 2 domain-containing phosphatase-1 (SHP-1) and SHP-2 in mouse bone marrow-derived mast cells (mBMMCs). SHP-1 associated transiently with gp49B1 within 1 min after coligation of gp49B1 with cross-linked FcepsilonRI in mBMMCs. SHP-1-deficient mBMMCs exhibited a partial loss of gp49B1-mediated inhibition of FcepsilonRI-induced exocytosis at concentrations of IgE providing optimal exocytosis, revealing a central, but not exclusive, SHP-1 requirement in the counter-regulatory pathway. Coligation of gp49B1 with cross-linked FcepsilonRI on mBMMCs inhibited early release of calcium from intracellular stores and subsequent influx of extracellular calcium, consistent with SHP-1 participation. Because exocytosis is complete within 2 min in mBMMCs, our studies establish a role for SHP-1 in the initial counter-regulatory cellular responses whereby gp49B1 immunoreceptor tyrosine-based inhibition motifs rapidly transmit inhibition of FcepsilonRI-mediated exocytosis.

摘要

我们通过分子、药理学和生理学方法,确定了免疫球蛋白超家族成员gp49B1抑制由IgE高亲和力Fc受体(FcepsilonRI)介导的肥大细胞激活的近端机制。在表达转染小鼠gp49B1的大鼠嗜碱性白血病-2H3细胞中,gp49B1细胞质结构域的两个基于免疫受体酪氨酸的抑制基序中任何一个的酪氨酸突变为苯丙氨酸,均可部分抑制gp49B1介导的胞吐作用抑制,而两者均突变则消除抑制能力。过氧钒酸钠可诱导小鼠骨髓来源肥大细胞(mBMMCs)中天然gp49B1的酪氨酸磷酸化以及含酪氨酸磷酸酶src同源2结构域的磷酸酶-1(SHP-1)和SHP-2的结合。在mBMMCs中,将gp49B1与交联的FcepsilonRI共连接后1分钟内,SHP-1与gp49B1短暂结合。在提供最佳胞吐作用的IgE浓度下,SHP-1缺陷的mBMMCs表现出gp49B1介导的对FcepsilonRI诱导的胞吐作用抑制的部分丧失,揭示了在反调节途径中SHP-1的核心但非唯一需求。在mBMMCs上,将gp49B1与交联的FcepsilonRI共连接可抑制细胞内钙库的早期钙释放以及随后细胞外钙的内流,这与SHP-1的参与一致。由于mBMMCs中的胞吐作用在2分钟内完成,我们的研究确定了SHP-1在初始反调节细胞反应中的作用,即gp49B1基于免疫受体酪氨酸的抑制基序迅速传递对FcepsilonRI介导的胞吐作用的抑制。

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