Mazure N M, Chen E Y, Yeh P, Laderoute K R, Giaccia A J
Cancer Biology Research Laboratory, Department of Radiation Oncology, Stanford University School of Medicine, California 94305-5468.
Cancer Res. 1996 Aug 1;56(15):3436-40.
Hypoxia can select for cells that have lost their apoptotic potential, thereby making them resistant to adverse conditions. However, long-term survival of transformed cells which have diminished apoptotic sensitivity when exposed to low oxygen conditions would require the activation of their angiogenic program to compensate for an insufficient oxygen supply. In this report, we show that the activity (of oncogenic Ha-ras, either constitutively or transiently, enhances the induction of the angiogenic mitogen, vascular endothelial growth factor (VEGF), by hypoxia. Analysis of the 5' flanking region of the VEGF promoter indicates that a HIF-1-like sequence is to promote a 15-fold increase in reporter gene activity in Ha-ras-transformed cells when exposed to hypoxia, whereas mutations in the same site totally inhibited VEGF induction. Under low oxygen conditions, VEGF induction is inhibited in cells expressing a mutant inhibitory allele of Ha-ras (RasN17), indicating a direct role for Ras in modulating VEGF activity. We propose that the angiogenic switch in Ras-transformed cells may be physiologically promoted by the tumor microenvironment through VEGF induction.
缺氧可筛选出丧失凋亡潜能的细胞,从而使其对不利条件具有抗性。然而,当暴露于低氧条件时凋亡敏感性降低的转化细胞的长期存活将需要激活其血管生成程序以补偿氧气供应不足。在本报告中,我们表明致癌性Ha-ras的活性(组成型或瞬时型)通过缺氧增强血管生成有丝分裂原血管内皮生长因子(VEGF)的诱导。对VEGF启动子5'侧翼区域的分析表明,一个HIF-1样序列在Ha-ras转化细胞暴露于缺氧时可促进报告基因活性增加15倍,而同一位点的突变则完全抑制VEGF诱导。在低氧条件下,VEGF诱导在表达Ha-ras突变抑制等位基因(RasN17)的细胞中受到抑制,表明Ras在调节VEGF活性中起直接作用。我们提出,肿瘤微环境可能通过VEGF诱导在生理上促进Ras转化细胞中的血管生成开关。