Tong Jiefei, Elowe Sabine, Nash Piers, Pawson Tony
Programe in Molecular Biology and Cancer, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario M5G 1X5.
J Biol Chem. 2003 Feb 21;278(8):6111-9. doi: 10.1074/jbc.M208972200. Epub 2002 Dec 16.
Signaling by the Eph family of receptor tyrosine kinases (RTKs) is complex, because they can interact with a variety of intracellular targets, and can potentially induce distinct responses in different cell types. In NG108 neuronal cells, activated EphB2 recruits p120RasGAP, in a fashion that is associated with down-regulation of the Ras-Erk mitogen-activated kinase (MAPK) pathway and neurite retraction. To pursue the role of the Ras-MAPK pathway in EphB2-mediated growth cone collapse, and to explore the biochemical and biological functions of Eph receptors, we sought to re-engineer the signaling properties of EphB2 by manipulating its regulatory motifs and SH2 binding sites. An EphB2 mutant that retained juxtamembrane (JM) RasGAP binding sites but incorporated a Grb2 binding motif at an alternate RasGAP binding site within the kinase domain had little effect on basal Erk MAPK activation. In contrast, elimination of all RasGAP binding sites, accompanied by the addition of a Grb2 binding site within the kinase domain, led to an increase in phospho-Erk levels in NG108 cells following ephrin-B1 stimulation. Functional assays indicated a correlation between neurite retraction and the ability of the EphB2 mutants to down-regulate Ras-Erk MAPK signaling. These data suggest that EphB2 can be designed to repress, stabilize, or activate the Ras-Erk MAPK pathway by the manipulation of RasGAP and Grb2 SH2 domain binding sites and support the notion that Erk MAPK regulation plays a significant role in axon guidance. The behavior of EphB2 variants with mutations in the JM region and kinase domains suggests an intricate pattern of regulation and target recognition by Eph receptors.
受体酪氨酸激酶(RTK)Eph家族的信号传导很复杂,因为它们可以与多种细胞内靶点相互作用,并可能在不同细胞类型中诱导不同的反应。在NG108神经元细胞中,活化的EphB2以与Ras-Erk丝裂原活化激酶(MAPK)途径下调和神经突回缩相关的方式招募p120RasGAP。为了探究Ras-MAPK途径在EphB2介导的生长锥塌陷中的作用,并探索Eph受体的生化和生物学功能,我们试图通过操纵其调节基序和SH2结合位点来重新设计EphB2的信号特性。一个保留了近膜(JM)RasGAP结合位点但在激酶结构域内的另一个RasGAP结合位点处引入了Grb2结合基序的EphB2突变体对基础Erk MAPK活化几乎没有影响。相反,消除所有RasGAP结合位点,并在激酶结构域内添加一个Grb2结合位点,导致在ephrin-B1刺激后NG108细胞中磷酸化Erk水平升高。功能测定表明神经突回缩与EphB2突变体下调Ras-Erk MAPK信号传导的能力之间存在相关性。这些数据表明,可以通过操纵RasGAP和Grb2 SH2结构域结合位点来设计EphB2以抑制、稳定或激活Ras-Erk MAPK途径,并支持Erk MAPK调节在轴突导向中起重要作用的观点。JM区域和激酶结构域发生突变的EphB2变体的行为表明Eph受体存在复杂的调节和靶点识别模式。