He T C, Zhuang H, Jiang N, Waterfield M D, Wojchowski D M
Department of Molecular and Cell Biology, Pennsylvania State University, University Park 16802.
Blood. 1993 Dec 15;82(12):3530-8.
Using an active, HAI epitope-tagged form of the murine erythropoietin (EPO) receptor and via direct coimmunoprecipitation, the p85 regulatory subunit of phosphatidyl inositol-3 kinase (p85/PI3-K) is shown to associate with the EPO receptor in transfected FDC-P1 cell lines. Coimmunoprecipitation of p85 with epitope-tagged EPO receptors was observed initially in FDC-HER cells labeled metabolically with [32P]orthophosphate, and association of these factors was confirmed by Western analyses of receptor immunoprecipitates using p85 antiserum. Interestingly, this association occurred in the absence of ligand, and exposure of FDC-HER cells to EPO did not detectably affect levels of receptor-associated p85 or overall levels of p85 phosphorylation. However, EPO was observed to stimulated the rapid formation of phosphatidylinositol 32P-phosphate in FDC-HER and FDC-ER cells. Through baculovirus-mediated expression of epitope-tagged EPO receptor forms in SF9 cells, domains for p85 association were mapped. Analyses of receptor forms with cytosolic truncations and deletions delineated a candidate subdomain for p85 binding to an essential extended box-2 region (P329-E374; including a putative motif for SH2 binding, Y343LVL). These findings extend a mechanistic alignment between the EPO receptor and protein tyrosine kinase-encoding receptors that likewise activate PI3-K, and expand the importance of further defining pathways to PI3-K activation.
利用鼠促红细胞生成素(EPO)受体的一种活性、带有医院感染(HAI)表位标签的形式,并通过直接免疫共沉淀法,发现在转染的FDC-P1细胞系中,磷脂酰肌醇-3激酶(p85/PI3-K)的p85调节亚基与EPO受体相关联。最初在经[32P]正磷酸盐代谢标记的FDC-HER细胞中观察到p85与带有表位标签的EPO受体的免疫共沉淀,并且使用p85抗血清对受体免疫沉淀物进行蛋白质印迹分析证实了这些因子的关联。有趣的是,这种关联在没有配体的情况下发生,并且将FDC-HER细胞暴露于EPO并未检测到对受体相关p85的水平或p85磷酸化的总体水平有影响。然而,观察到EPO可刺激FDC-HER和FDC-ER细胞中磷脂酰肌醇32P-磷酸的快速形成。通过杆状病毒介导在SF9细胞中表达带有表位标签的EPO受体形式,绘制了与p85关联的结构域。对具有胞质截短和缺失的受体形式的分析确定了一个候选亚结构域,用于p85与一个必需的扩展框2区域(P329-E374;包括一个假定的SH2结合基序,Y343LVL)结合。这些发现扩展了EPO受体与同样激活PI3-K的蛋白质酪氨酸激酶编码受体之间的机制一致性,并扩大了进一步确定PI3-K激活途径的重要性。