Shivakrupa R, Linnekin Diana
Basic Research Laboratory, Center for Cancer Research, National Cancer Institute-Frederick, Building 567, Room 226, Frederick MD 21702, USA.
Cell Signal. 2005 Jan;17(1):103-9. doi: 10.1016/j.cellsig.2004.06.004.
SCF induces autophosphorylation of Kit and activates a variety of signaling components including Jnks, Erks, PI 3 Kinase, the JAK-Stat pathway and members of the Src family. Previously we showed that Lyn is activated at multiple points during SCF-induced cell cycle progression and contributes to SCF-mediated growth, chemotaxis and internalization of Kit. However, the Kit-dependent biochemical events that require Lyn are unknown. In this study, we used Lyn-deficient bone marrow mast cells (BMMC) to examine the contribution of this Src family member to tyrosine phosphorylation of Kit and SCF-induced activation of Jnks, Akt, Stat3 and Erks. Although surface expression of Kit was increased in Lyn-deficient BMMC, SCF-induced phosphorylation and growth was reduced compared to wild-type BMMC. Downstream of Kit, SCF-induced activation of Jnks was markedly reduced in Lyn-deficient BMMC. Further, Lyn was required for SCF-induced tyrosine phosphorylation of Stat3. Interestingly, Kit was constitutively associated with PI 3 Kinase in Lyn-deficient BMMC and this correlated with constitutive phosphorylation of Akt. This was in marked contrast to wild-type BMMC, where both these events were induced by SCF. These data indicate that in BMMC, Lyn contributes to SCF-induced phosphorylation of Kit, as well as phosphorylation of Jnks and Stat3. In contrast, Lyn may negatively regulate the PI 3 Kinase/Akt pathway. The opposing effects of Lyn on these signaling pathways may explain the pleiotropic effects ascribed to this Src family member in the literature.
干细胞因子(SCF)诱导Kit的自身磷酸化,并激活多种信号转导成分,包括Jnks、Erks、磷脂酰肌醇3激酶(PI 3激酶)、JAK-Stat信号通路以及Src家族成员。此前我们发现,在SCF诱导的细胞周期进程中,Lyn在多个位点被激活,并促进SCF介导的Kit的生长、趋化性和内化。然而,需要Lyn参与的依赖Kit的生化事件尚不清楚。在本研究中,我们使用Lyn缺陷的骨髓肥大细胞(BMMC)来研究这个Src家族成员对Kit酪氨酸磷酸化以及SCF诱导的Jnks、Akt、Stat3和Erks激活的作用。尽管Lyn缺陷的BMMC中Kit的表面表达增加,但与野生型BMMC相比,SCF诱导的磷酸化和生长却减少了。在Kit的下游,Lyn缺陷的BMMC中SCF诱导的Jnks激活明显减少。此外,SCF诱导的Stat3酪氨酸磷酸化需要Lyn。有趣的是,在Lyn缺陷的BMMC中,Kit与PI 3激酶持续结合,这与Akt的持续磷酸化相关。这与野生型BMMC形成显著对比,在野生型BMMC中,这两个事件均由SCF诱导。这些数据表明,在BMMC中,Lyn促进SCF诱导的Kit磷酸化以及Jnks和Stat3的磷酸化。相反,Lyn可能对PI 3激酶/Akt信号通路起负调节作用。Lyn对这些信号通路的相反作用可能解释了文献中归因于这个Src家族成员的多效性作用。