Nishibe S, Wahl M I, Wedegaertner P B, Kim J W, Rhee S G, Carpenter G
Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN 37232-0146.
Proc Natl Acad Sci U S A. 1990 Jan;87(1):424-8. doi: 10.1073/pnas.87.1.424.
Phosphatidylinositol-specific phospholipase C isozyme gamma (PLC-gamma, Mr 145,000) is an excellent substrate for the epidermal growth factor (EGF) receptor both in vivo and in vitro. PLC-beta-1, another PLC isozyme, is a poor substrate for the EGF receptor. We examined the relative phosphorylation of PLC-gamma and PLC-beta-1 by the 170-kDa native EGF receptor molecule, the 66-kDa cytoplasmic kinase domain of the EGF receptor (Arg647-Ala1186), the alpha 2 beta 2 native insulin receptor, and the 48-kDa cytoplasmic kinase domain of the insulin receptor beta subunit (Gly947-Ser1343). Similar to the intact EGF receptor, the cytoplasmic kinase domain of the EGF receptor preferentially phosphorylated PLC-gamma. High-performance liquid chromatographic comparison of tryptic phosphopeptides from PLC-gamma phosphorylated by both forms of the EGF receptor kinase indicated similar patterns of multiple tyrosine phosphorylations. These results imply that substrate selectivity, at least in terms of PLC isozymes, is independent of the extracellular ligand-binding and membrane anchor domains of the EGF receptor. In comparison, neither the intact insulin receptor nor the beta-chain kinase domain was able to phosphorylate PLC-gamma to a significant extent. Also, insulin failed to stimulate the phosphorylation of PLC-gamma in NIH 3T3/HIR cells, which overexpress the human insulin receptor. Thus PLC-gamma is not a phosphorylation substrate for the insulin receptor in vitro or in the intact cell.
磷脂酰肌醇特异性磷脂酶C同工酶γ(PLC-γ,分子量145,000)在体内和体外都是表皮生长因子(EGF)受体的优良底物。另一种PLC同工酶PLC-β-1则是EGF受体的不良底物。我们检测了170-kDa天然EGF受体分子、EGF受体66-kDa胞质激酶结构域(Arg647-Ala1186)、α2β2天然胰岛素受体以及胰岛素受体β亚基48-kDa胞质激酶结构域(Gly947-Ser1343)对PLC-γ和PLC-β-1的相对磷酸化作用。与完整的EGF受体相似,EGF受体的胞质激酶结构域优先磷酸化PLC-γ。对由两种形式的EGF受体激酶磷酸化的PLC-γ的胰蛋白酶磷酸肽进行高效液相色谱比较,结果表明存在相似的多个酪氨酸磷酸化模式。这些结果表明,至少就PLC同工酶而言,底物选择性与EGF受体的细胞外配体结合和膜锚定结构域无关。相比之下,完整的胰岛素受体及其β链激酶结构域均不能在很大程度上磷酸化PLC-γ。此外,胰岛素未能刺激过表达人胰岛素受体的NIH 3T3/HIR细胞中PLC-γ的磷酸化。因此,在体外或完整细胞中,PLC-γ都不是胰岛素受体的磷酸化底物。