Nanjundan Meera, Sun Jun, Zhao Ji, Zhou Quansheng, Sims Peter J, Wiedmer Therese
Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 2003 Sep 26;278(39):37413-8. doi: 10.1074/jbc.M306182200. Epub 2003 Jul 18.
Phospholipid scramblase (PLSCR1) is a multiply palmitoylated, calcium-binding endofacial membrane protein proposed to mediate transbilayer movement of plasma membrane phospholipids. PLSCR1 is a component of membrane lipid rafts and has been shown to both physically and functionally interact with activated epidermal growth factor (EGF) receptors and other raft-associated cell surface receptors. Cell stimulation by EGF results in Tyr phosphorylation of PLSCR1, its association with both Shc and EGF receptors, and rapid cycling of PLSCR1 between plasma membrane and endosomal compartments. We now report evidence that upon EGF stimulation, PLSCR1 is phosphorylated by c-Src, within the tandem repeat sequence 68VYNQPVYNQP77. The in vivo interaction between PLSCR1 and Shc requires the Src-mediated phosphorylation on tyrosines 69 and 74. In in vitro pull down studies, phosphorylated PLSCR1 was found to bind directly to Shc through the phosphotyrosine binding domain. Consistent with the potential role of PLSCR1 in growth factor signaling pathways, granulocyte precursors derived from mice deficient in PLSCR1 show impaired proliferation and maturation under cytokine stimulation. Using PLSCR1-/- embryonic fibroblasts and kidney epithelial cells, we now demonstrate that deletion of PLSCR1 from the plasma membrane reduces the activation of c-Src by EGF, implying that PLSCR1 normally facilitates receptor-dependent activation of this kinase. We propose that PLSCR1, through its interaction with Shc, promotes Src kinase activation through the EGF receptor.
磷脂翻转酶(PLSCR1)是一种多次棕榈酰化的、结合钙的内膜蛋白,被认为可介导质膜磷脂的跨膜运动。PLSCR1是膜脂筏的一个组成部分,已被证明在物理和功能上都能与活化的表皮生长因子(EGF)受体及其他与脂筏相关的细胞表面受体相互作用。EGF对细胞的刺激导致PLSCR1的酪氨酸磷酸化、它与Shc和EGF受体的结合,以及PLSCR1在质膜和内体区室之间的快速循环。我们现在报告证据表明,在EGF刺激下,PLSCR1在串联重复序列68VYNQPVYNQP77内被c-Src磷酸化。PLSCR1与Shc在体内的相互作用需要Src介导的酪氨酸69和74位的磷酸化。在体外下拉实验中,发现磷酸化的PLSCR1通过磷酸酪氨酸结合结构域直接与Shc结合。与PLSCR1在生长因子信号通路中的潜在作用一致,来自PLSCR1缺陷小鼠的粒细胞前体在细胞因子刺激下显示出增殖和成熟受损。利用PLSCR1基因敲除的胚胎成纤维细胞和肾上皮细胞,我们现在证明从质膜上缺失PLSCR1会降低EGF对c-Src的激活,这意味着PLSCR1通常促进该激酶的受体依赖性激活。我们提出,PLSCR1通过与Shc相互作用,促进Src激酶通过EGF受体的激活。