Xing L, Ge C, Zeltser R, Maskevitch G, Mayer B J, Alexandropoulos K
Department of Pharmacology, College of Physicians and Surgeons of Columbia University, New York, New York 10032, USA.
Mol Cell Biol. 2000 Oct;20(19):7363-77. doi: 10.1128/MCB.20.19.7363-7377.2000.
Oncogenic Src proteins have been extensively studied to gain insight into the signaling mechanisms of Src. To better understand signaling through wild-type Src, we used an approach that involves activation of Src signaling through the binding of physiologic ligands to the Src SH3 domain. To this end, we used full-length and truncated versions of the multiadapter molecules Cas and Sin to activate c-Src, and we examined the intracellular pathways that mediate Src signaling under these conditions. We show that although all proteins bind to and are phosphorylated by c-Src, quantitative differences exist in the ability of the different ligands to activate c-Src signaling. In addition, we show that Sin- and Cas-induced Src signaling, as assayed by transcriptional activation, is exclusively mediated through a pathway that involves the adapter Crk and the GTP-binding protein Rap1. These data are in contrast to previous observations showing Ras to mediate signaling downstream of transforming Src alleles. In our system, we found that signaling through the oncogenic SrcY527 mutant is indeed mediated by Ras. In addition, we found that Rap1 also mediates oncogenic Src signaling. Our results show for the first time that Rap1 mediates c-Src kinase signaling and reveal mechanistic differences in the signaling properties of wild-type and transforming Src proteins.
为深入了解Src的信号传导机制,人们对致癌性Src蛋白进行了广泛研究。为了更好地理解野生型Src的信号传导,我们采用了一种方法,即通过生理配体与Src SH3结构域结合来激活Src信号传导。为此,我们使用了多接头分子Cas和Sin的全长及截短版本来激活c-Src,并研究了在这些条件下介导Src信号传导的细胞内途径。我们发现,尽管所有蛋白质都能与c-Src结合并被其磷酸化,但不同配体激活c-Src信号传导的能力存在定量差异。此外,我们发现,通过转录激活检测,Sin和Cas诱导的Src信号传导完全是通过一条涉及接头蛋白Crk和GTP结合蛋白Rap1的途径介导的。这些数据与之前显示Ras介导转化型Src等位基因下游信号传导的观察结果形成对比。在我们的系统中,我们发现致癌性SrcY527突变体介导的信号传导确实由Ras介导。此外,我们还发现Rap1也介导致癌性Src信号传导。我们的结果首次表明Rap1介导c-Src激酶信号传导,并揭示了野生型和转化型Src蛋白信号传导特性的机制差异。