Auvinen M, Paasinen-Sohns A, Hirai H, Andersson L C, Hölttä E
Department of Pathology, Haartman Institute, University of Helsinki, Finland.
Mol Cell Biol. 1995 Dec;15(12):6513-25. doi: 10.1128/MCB.15.12.6513.
We have found that overexpression of human ornithine decarboxylase (ODC) induces cell transformation in NIH 3T3 and Rat-1 cells (M. Auvinen, A. Paasinen, L. C. Andersson, and E. Hölttä, Nature (London) 360:355-358, 1992). The ODC-transformed cells display increased levels of tyrosine phosphorylation, in particular of a cluster of 130-kDa proteins. Here we show that one of the proteins with enhanced levels of tyrosine phosphorylation in ODC-overexpressing cells is the previously described p130 substrate of pp60v-src, known to associate also with v-Crk and designated p130CAS. We also studied the role of protein tyrosine phosphorylation in the ODC-induced cell transformation by exposing the cells to herbimycin A, a potent inhibitor of Src-family kinases, and to other inhibitors of protein tyrosine kinases. Treatment with the inhibitors reversed the phenotype of ODC-transformed cells to normal, with an organized, filamentous actin cytoskeleton. Coincidentally, the tyrosine hyperphosphorylation of p130 was markedly reduced, while the level of activity of ODC remained highly elevated. A similar reduction in pp130 phosphorylation and reversion of morphology by herbimycin A were observed in v-src- and c-Ha-ras-transformed cells. In addition, we show that expression of antisense mRNA for p130CAS resulted in reversion of the transformed phenotype of all these cell lines. An increased level of tyrosine kinase activity, not caused by c-Src or c-Abl, was further detected in the cytoplasmic fraction of ODC-transformed cells. Preliminary characteristics of this kinase are shown. These data indicate that p130CAS is involved in cell transformation by ODC, c-ras, and v-src oncogenes, raise the intriguing possibility that p130CAS may be generally required for transformation, and imply that there is at least one protein tyrosine kinase downstream of ODC that is instrumental for cell transformation.
我们发现,人鸟氨酸脱羧酶(ODC)的过表达可诱导NIH 3T3和大鼠1细胞发生细胞转化(M. 奥维宁、A. 帕西宁、L. C. 安德森和E. 霍尔塔,《自然》(伦敦)360:355 - 358,1992年)。ODC转化细胞中酪氨酸磷酸化水平升高,特别是一组130 kDa蛋白质。在此我们表明,在ODC过表达细胞中酪氨酸磷酸化水平增强的一种蛋白质是先前描述的pp60v - src的p130底物,已知它也与v - Crk相关联并命名为p130CAS。我们还通过将细胞暴露于一种有效的Src家族激酶抑制剂赫伯霉素A以及其他蛋白质酪氨酸激酶抑制剂,研究了蛋白质酪氨酸磷酸化在ODC诱导的细胞转化中的作用。用这些抑制剂处理可使ODC转化细胞的表型恢复正常,具有有序的丝状肌动蛋白细胞骨架。巧合的是,p130的酪氨酸过度磷酸化明显减少,而ODC的活性水平仍保持高度升高。在v - src和c - Ha - ras转化细胞中也观察到赫伯霉素A导致的pp130磷酸化类似减少和形态恢复。此外,我们表明p130CAS反义mRNA的表达导致所有这些细胞系的转化表型恢复。在ODC转化细胞的细胞质部分进一步检测到一种不是由c - Src或c - Abl引起的酪氨酸激酶活性升高。展示了这种激酶的初步特性。这些数据表明p130CAS参与ODC、c - ras和v - src癌基因诱导的细胞转化,提出了p130CAS可能是转化普遍所需的这一有趣可能性,并暗示在ODC下游至少有一个蛋白质酪氨酸激酶对细胞转化起作用。