Brizzi M F, Dentelli P, Lanfrancone L, Rosso A, Pelicci P G, Pegoraro L
Dipartimento di Medicina Interna, Università di Torino, Italy.
Oncogene. 1996 Nov 21;13(10):2067-76.
Hemopoietic cell proliferation is mediated by non-tyrosine and tyrosine kinases that signal via uncommon and common sets of downstream effector molecules including the Grb2/c-Cbl. In the present study we evaluated tyrosine phosphorylation of c-Cbl and the interaction of the Grb2/c-Cbl complex with signaling proteins upon activation of non-tyrosine (c-Mpl) and tyrosine kinase (c-Kit) receptors leading to myeloid cell proliferation. By using the growth factor dependent M-07e cell line, we found that both c-Mpl and c-Kit ligands, namely: SCF and TPO, induce c-Cbl tyrosine phosphorylation. In these cells the adaptor protein Grb2 constitutively binds a substantial fraction of c-Cbl through the N-terminal SH3 domain. In vitro experiments showed that the stable Grb2/c-Cbl complex interacts, through the Grb2 SH2 domain, with the SCF-activated c-Kit. By contrast stimulation with TPO leads to the formation of a Grb2 complex containing JAK2. In vitro and in vivo experiments support the hypothesis that Grb2 mediates the association of c-Kit with c-Cbl. Moreover we found that, upon SCF stimulation, the Grb2/c-Cbl complex recruits Shc, probably via Grb2. By contrast the Ras exchanger factor (Sos1) was not detected in anti-c-Cbl immunoprecipitates suggesting that Grb2/Sos1 and Grb2/c-Cbl are present in different complexes. Taken together our results demonstrate that c-Cbl plays an important role in coupling both tyrosine and non-tyrosine kinase receptors to downstream effector molecules and that different signaling molecules interact with Grb2/c-Cbl complex when non-tyrosine or tyrosine kinase receptors are activated.
造血细胞增殖由非酪氨酸激酶和酪氨酸激酶介导,这些激酶通过包括Grb2/c-Cbl在内的一组不同寻常和常见的下游效应分子发出信号。在本研究中,我们评估了c-Cbl的酪氨酸磷酸化以及Grb2/c-Cbl复合物与信号蛋白在非酪氨酸(c-Mpl)和酪氨酸激酶(c-Kit)受体激活后导致髓样细胞增殖时的相互作用。通过使用依赖生长因子的M-07e细胞系,我们发现c-Mpl和c-Kit配体,即SCF和TPO,均可诱导c-Cbl酪氨酸磷酸化。在这些细胞中,衔接蛋白Grb2通过N端SH3结构域持续结合相当一部分c-Cbl。体外实验表明,稳定的Grb2/c-Cbl复合物通过Grb2 SH2结构域与SCF激活的c-Kit相互作用。相比之下,TPO刺激导致形成含有JAK2的Grb2复合物。体外和体内实验支持Grb2介导c-Kit与c-Cbl结合的假说。此外,我们发现,在SCF刺激后,Grb2/c-Cbl复合物可能通过Grb2招募Shc。相比之下,在抗c-Cbl免疫沉淀物中未检测到Ras交换因子(Sos1),这表明Grb2/Sos1和Grb2/c-Cbl存在于不同的复合物中。综上所述,我们的结果表明,c-Cbl在将酪氨酸激酶和非酪氨酸激酶受体与下游效应分子偶联中起重要作用,并且当非酪氨酸或酪氨酸激酶受体被激活时,不同的信号分子与Grb2/c-Cbl复合物相互作用。