Akiri G, Nahari D, Finkelstein Y, Le S Y, Elroy-Stein O, Levi B Z
Department of Food Engineering and Biotechnology, Technion, Haifa, Israel.
Oncogene. 1998 Jul 16;17(2):227-36. doi: 10.1038/sj.onc.1202019.
Vascular Endothelial Growth Factor (VEGF) is a very potent angiogenic agent that has a central role in normal physiological angiogenesis as well as in tumor angiogenesis. VEGF expression is induced by hypoxia and hypoglycemia, and thus was suggested to promote neovascularization during tumor outgrowth. Yet, the molecular mechanism that governs VEGF expression is not fully characterized. VEGF induction is attributed in part to increased levels of transcription and RNA stability. Previously, we demonstrated that the 5' Untranslated Region (5' UTR) of VEGF has an important regulatory role in its expression. VEGF has an exceptionally long 5' UTR (1038 bp) which is highly rich in G+C nucleotides. This suggests that secondary structures in the 5' UTR might be essential for VEGF expression through transcriptional and post-transcriptional control mechanisms, as demonstrated for other growth factors. In this communication, we provide evidence that a computer predicted Internal Ribosome Entry Site (IRES) structure is biologically active and is located at the 3' end of the UTR. In addition, the results demonstrate that an alternative transcriptional initiation site for VEGF exists in the 5' UTR of VEGF. This alternative initiation site is 633 bp downstream of the main transcription start site and the resulting 5' UTR includes mainly the IRES structure. Therefore, our results suggest that VEGF is subjected to regulation at either translational level through a mechanism of ribosome internal initiation and/or transcriptional level through alternative initiation.
血管内皮生长因子(VEGF)是一种非常有效的血管生成因子,在正常生理血管生成以及肿瘤血管生成中都起着核心作用。VEGF的表达由缺氧和低血糖诱导,因此被认为在肿瘤生长过程中促进新血管形成。然而,调控VEGF表达的分子机制尚未完全明确。VEGF的诱导部分归因于转录水平的提高和RNA稳定性。此前,我们证明VEGF的5'非翻译区(5'UTR)在其表达中具有重要的调节作用。VEGF具有异常长的5'UTR(1038bp),富含G+C核苷酸。这表明5'UTR中的二级结构可能通过转录和转录后控制机制对VEGF的表达至关重要,其他生长因子也有类似情况。在本通讯中,我们提供证据表明计算机预测的内部核糖体进入位点(IRES)结构具有生物学活性,且位于UTR的3'端。此外,结果表明VEGF的5'UTR中存在一个替代性转录起始位点。这个替代性起始位点位于主要转录起始位点下游633bp处,由此产生的5'UTR主要包含IRES结构。因此,我们的结果表明VEGF在翻译水平上通过核糖体内部起始机制受到调控,和/或在转录水平上通过替代性起始受到调控。