Cammas Anne, Dubrac Alexandre, Morel Benjamin, Lamaa Assala, Touriol Christian, Teulade-Fichou Marie-Paule, Prats Hervé, Millevoi Stefania
a Inserm UMR 1037- University of Toulouse III; Cancer Research Center of Toulouse (CRCT) ; Toulouse, France.
RNA Biol. 2015;12(3):320-9. doi: 10.1080/15476286.2015.1017236.
The activation of translation contributes to malignant transformation and is an emerging target for cancer therapies. RNA G-quadruplex structures are general inhibitors of cap-dependent mRNA translation and were recently shown to be targeted for oncoprotein translational activation. In contrast however, the G-quadruplex within the 5'UTR of the human vascular endothelial growth factor A (VEGF) has been shown to be essential for IRES-mediated translation. Since VEGF has a pivotal role in tumor angiogenesis and is a major target of anti-tumoral therapies, we investigated the structure/function relationship of the VEGF G-quadruplex and defined whether it could have a therapeutic potential. We found that the G-quadruplex within the VEGF IRES is dispensable for cap-independent function and activation in stress conditions. However, stabilization of the VEGF G-quadruplex by increasing the G-stretches length or by replacing it with the one of NRAS results in strong inhibition of IRES-mediated translation of VEGF. We also demonstrate that G-quadruplex ligands stabilize the VEGF G-quadruplex and inhibit cap-independent translation in vitro. Importantly, the amount of human VEGF mRNA associated with polysomes decreases in the presence of a highly selective stabilizing G-quadruplex ligand, resulting in reduced VEGF protein expression. Together, our results uncover the existence of functionally silent G-quadruplex structures that are susceptible to conversion into efficient repressors of cap-independent mRNA translation. These findings have implications for the in vivo applications of G-quadruplex-targeting compounds and for anti-angiogenic therapies.
翻译的激活促进恶性转化,是癌症治疗的一个新兴靶点。RNA G-四链体结构是帽依赖性mRNA翻译的一般抑制剂,最近被证明是癌蛋白翻译激活的靶点。然而,相比之下,人血管内皮生长因子A(VEGF)5'UTR内的G-四链体已被证明对IRES介导的翻译至关重要。由于VEGF在肿瘤血管生成中起关键作用,是抗肿瘤治疗的主要靶点,我们研究了VEGF G-四链体的结构/功能关系,并确定它是否具有治疗潜力。我们发现,VEGF IRES内的G-四链体在应激条件下对非帽依赖性功能和激活是可有可无的。然而,通过增加G链长度或用NRAS的G-四链体之一替换来稳定VEGF G-四链体,会强烈抑制VEGF的IRES介导的翻译。我们还证明,G-四链体配体在体外稳定VEGF G-四链体并抑制非帽依赖性翻译。重要的是,在存在高度选择性稳定G-四链体配体的情况下,与多核糖体相关的人VEGF mRNA量减少,导致VEGF蛋白表达降低。总之,我们的结果揭示了功能沉默的G-四链体结构的存在,这些结构易于转化为非帽依赖性mRNA翻译的有效抑制剂。这些发现对G-四链体靶向化合物的体内应用和抗血管生成治疗具有重要意义。