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鉴定出一种与Ig受体相关的MB-1蛋白共沉淀的52 kDa分子(p52),该分子可被佛波酯肉豆蔻酸酯乙酸酯刺激诱导磷酸化。

Identification of a 52-kDa molecule (p52) coprecipitated with the Ig receptor-related MB-1 protein that is inducibly phosphorylated by the stimulation with phorbol myristate acetate.

作者信息

Kuwahara K, Matsuo T, Nomura J, Igarashi H, Kimoto M, Inui S, Sakaguchi N

机构信息

Department of Immunology, School of Life Science, Faculty of Medicine, Tottori University, Yonago, Japan.

出版信息

J Immunol. 1994 Mar 15;152(6):2742-52.

PMID:8144881
Abstract

Triggering of the Ig receptor (IgR) induces the activation in multiple intracellular signal transduction reactions including protein tyrosine phosphorylation, activation of phospholipase C, increased inositoltriphosphate, increased diacylglycerol, intracellular Ca2+ mobilization, and activation of protein kinase C. The IgR-complex, composed of mu-chain, L chain, Ig-alpha (MB-1), and Ig-beta (B29) proteins, is a functional unit both for expression of IgR and for signal transduction into cells, possibly by physical association with the down-stream functional molecules. An important functional motif ((D or E)-X7-(D or E)-Y-X3-L-X7-Y-X2-(L or I)) in the cytoplasmic domain of MB-1 molecule was shown to bind with several phosphoprotein components including src-type tyrosine kinases and phosphatidylinositol-3 kinase. To further study the functional components, we analyzed the phosphoprotein molecules coprecipitated with MB-1 protein. We found that a 52-kDa protein is coprecipitated with MB-1 protein and is inducibly phosphorylated by the stimulation with PMA. A rat mAb, prepared by immunizing the 52-kDa protein purified from SDS-PAGE, could detect the similar 52-kDa phosphoprotein (p52) expressed on the cell surface. In comparison with the 52-kDa protein in the immunoprecipitate of MB-1, the p52 migrated to the same position on 2-D gel electrophoresis (nonequilibrium pH gradient gel electrophoresis/SDS-PAGE). An in vitro kinase reaction analysis demonstrated that the p52 is tightly associated with the tyrosine kinase molecule(s), one of which is an 80-kDa protein containing an apparent autophosphorylation activity. These molecules would provide the informations of the down-stream molecules in the cascade reactions of the IgR-mediated signal transduction.

摘要

Ig受体(IgR)的激活会引发多种细胞内信号转导反应,包括蛋白质酪氨酸磷酸化、磷脂酶C的激活、肌醇三磷酸增加、二酰基甘油增加、细胞内Ca2+动员以及蛋白激酶C的激活。由μ链、L链、Ig-α(MB-1)和Ig-β(B29)蛋白组成的IgR复合物,既是IgR表达的功能单位,也是信号转导进入细胞的功能单位,可能是通过与下游功能分子的物理结合来实现。MB-1分子胞质结构域中的一个重要功能基序((D或E)-X7-(D或E)-Y-X3-L-X7-Y-X2-(L或I))被证明可与包括src型酪氨酸激酶和磷脂酰肌醇-3激酶在内的几种磷蛋白成分结合。为了进一步研究功能成分,我们分析了与MB-1蛋白共沉淀的磷蛋白分子。我们发现一种52 kDa的蛋白与MB-1蛋白共沉淀,并且在佛波酯刺激下可被诱导磷酸化。通过免疫从SDS-PAGE纯化的52 kDa蛋白制备的大鼠单克隆抗体,能够检测到细胞表面表达的类似的52 kDa磷蛋白(p52)。与MB-1免疫沉淀物中的52 kDa蛋白相比,p52在二维凝胶电泳(非平衡pH梯度凝胶电泳/SDS-PAGE)上迁移到相同位置。体外激酶反应分析表明,p52与酪氨酸激酶分子紧密相关,其中之一是一种具有明显自磷酸化活性的80 kDa蛋白。这些分子将提供IgR介导的信号转导级联反应中下游分子的信息。

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