Craddock B L, Welham M J
Pharmacology Group, Department of Pharmacy and Pharmacology, University of Bath, Bath BA2 7AY, United Kingdom.
J Biol Chem. 1997 Nov 14;272(46):29281-9. doi: 10.1074/jbc.272.46.29281.
We have observed previously the co-immunoprecipitation of the p85 subunit of phosphatidylinositol-3 kinase (PI3K) and SHP2 in murine lymphohemopoietic cells after stimulation with interleukin-3. We have investigated this interaction in more detail and now report the identification of a potentially novel 100-kDa protein (termed p100), which is inducibly phosphorylated on tyrosine after interleukin-3 treatment and which co-immunoprecipitates with both p85 PI3K and SHP2. The Src homology region 2 domains of both p85 and SHP2 appear to mediate their interactions with p100. Sequential precipitation analyses suggest that these interactions are direct and do not involve Grb2, and that the same p100 protein, or a portion of it, interacts with both p85 and SHP2, implying that p100 may serve to link these two proteins. Far Western blotting with both full-length p85 and isolated p85 Src homology region 2 domains supports this view. Interestingly, p100 also appears to be a substrate for the SHP2 phosphatase activity. In addition, p100 is precipitated by Grb2-glutathione S-transferase fusion proteins, an interaction largely mediated by the Grb2 SH3 domains. p100 appears to be distinct from JAK2, Vav, STAT5, and c-Cbl. Although largely cytosolic, p100 can be detected associated with SHP2 and PI3K in crude membrane fractions after interleukin-3 stimulation. We propose that p100 plays a role as an adaptor molecule, linking PI3K and SHP2 in IL-3 signaling.
我们之前观察到,在用白细胞介素-3刺激后,小鼠淋巴细胞造血细胞中磷脂酰肌醇-3激酶(PI3K)的p85亚基与SHP2会发生共免疫沉淀。我们对这种相互作用进行了更详细的研究,现在报告鉴定出一种潜在的新型100 kDa蛋白(称为p100),它在白细胞介素-3处理后可被诱导发生酪氨酸磷酸化,并与p85 PI3K和SHP2都发生共免疫沉淀。p85和SHP2的Src同源区域2结构域似乎介导了它们与p100的相互作用。顺序沉淀分析表明,这些相互作用是直接的,不涉及Grb2,并且同一p100蛋白或其一部分与p85和SHP2都相互作用,这意味着p100可能起到连接这两种蛋白的作用。用全长p85和分离的p85 Src同源区域2结构域进行的Far Western印迹分析支持了这一观点。有趣的是,p100似乎也是SHP2磷酸酶活性的底物。此外,p100可被Grb2-谷胱甘肽S-转移酶融合蛋白沉淀,这种相互作用主要由Grb2的SH3结构域介导。p100似乎与JAK2、Vav、STAT5和c-Cbl不同。尽管p100主要位于胞质中,但在白细胞介素-3刺激后,在粗膜组分中可检测到它与SHP2和PI3K相关联。我们提出,p100作为一种衔接分子,在白细胞介素-3信号传导中连接PI3K和SHP2。