Li W, Jiang Y X, Zhang J, Soon L, Flechner L, Kapoor V, Pierce J H, Wang L H
Laboratory of Cellular and Molecular Biology, National Cancer Institute, Bethesda, Maryland 20892, USA.
Mol Cell Biol. 1998 Oct;18(10):5888-98. doi: 10.1128/MCB.18.10.5888.
To investigate the potential role of protein kinase C-delta (PKC-delta) in insulin-like growth factor I receptor (IGF-IR)-mediated cell transformation, an oncogenic gag-IGF-IR beta-fusion receptor lacking the entire extracellular domain, which was designated NM1, and a full-length IGF-IR were coexpressed with either wild-type PKC-delta (PKC-deltaWT) or an ATP-binding mutant of PKC-delta (PKC-deltaK376R) in NIH 3T3 fibroblasts. While overexpression of PKC-deltaWT did not affect NM1- and IGF-IR-induced focus and colony formation of NIH 3T3 cells, expression of PKC-deltaK376R severely impaired these events. In contrast, NM1-mediated cell growth in monolayer was not affected by coexpressing PKC-deltaK376R. PKC-deltaWT and PKC-deltaK376R were constitutively phosphorylated on a tyrosine residue(s) in the NM1- and IGF-IR-expressing cells and were associated with them in an IGF-I-independent manner. Activated IGF-IR was able to phosphorylate purified PKC-delta in vitro and stimulated its kinase activity. Furthermore, the level of endogenous PKC-delta protein was up-regulated through transcriptional activation in response to long-term IGF-IR activation. Taken together, our results demonstrate that PKC-delta plays an important role in IGF-IR-mediated cell transformation, probably via association of the receptor with PKC-delta and its activation through protein up-regulation and tyrosine phosphorylation. Competition with endogenous PKC-delta for NM1 and IGF-IR association by PKC-deltaK376R is probably an important mechanism underlying the PKC-deltaK376R-mediated inhibition of cell transformation by NM1 and IGF-IR.
为了研究蛋白激酶C-δ(PKC-δ)在胰岛素样生长因子I受体(IGF-IR)介导的细胞转化中的潜在作用,将一种缺乏整个细胞外结构域的致癌性gag-IGF-IRβ融合受体(命名为NM1)和全长IGF-IR与野生型PKC-δ(PKC-δWT)或PKC-δ的ATP结合突变体(PKC-δK376R)在NIH 3T3成纤维细胞中共表达。虽然PKC-δWT的过表达不影响NM1和IGF-IR诱导的NIH 3T3细胞的集落形成,但PKC-δK376R的表达严重损害了这些过程。相反,NM1介导的单层细胞生长不受共表达PKC-δK376R的影响。在表达NM1和IGF-IR的细胞中,PKC-δWT和PKC-δK376R在酪氨酸残基上组成性磷酸化,并以不依赖IGF-I的方式与它们结合。活化的IGF-IR能够在体外磷酸化纯化的PKC-δ并刺激其激酶活性。此外,内源性PKC-δ蛋白的水平通过转录激活响应长期IGF-IR激活而上调。综上所述,我们的结果表明PKC-δ在IGF-IR介导的细胞转化中起重要作用,可能是通过受体与PKC-δ的结合以及通过蛋白上调和酪氨酸磷酸化对其进行激活。PKC-δK376R与内源性PKC-δ竞争与NM1和IGF-IR的结合可能是PKC-δK376R介导的对NM1和IGF-IR诱导的细胞转化抑制作用的重要机制。