Deviatkin Andrei A, Simonov Ruslan A, Trutneva Kseniya A, Maznina Anna A, Soroka Anastasiia B, Kogan Anna A, Feoktistova Sofya G, Khavina Elena M, Mityaeva Olga N, Volchkov Pavel Y
Life Sciences Research Center, Moscow Institute of Physics and Technology, National Research University, 141700 Dolgoprudniy, Russia.
Endocrinology Research Centre, 117036 Moscow, Russia.
Vaccines (Basel). 2023 Jan 20;11(2):238. doi: 10.3390/vaccines11020238.
Recently, the mRNA platform has become the method of choice in vaccine development to find new ways to fight infectious diseases. However, this approach has shortcomings, namely that mRNA vaccines require special storage conditions, which makes them less accessible. This instability is due to the fact that the five-prime and three-prime ends of the mRNA are a substrate for the ubiquitous exoribonucleases. To address the problem, circular mRNAs have been proposed for transgene delivery as they lack these ends. Notably, circular RNAs do not have a capped five-prime end, which makes it impossible to initiate translation canonically. In this review, we summarize the current knowledge on cap-independent translation initiation methods and discuss which approaches might be most effective in developing vaccines and other biotechnological products based on circular mRNAs.
最近,mRNA平台已成为疫苗开发中寻找抗击传染病新方法的首选方法。然而,这种方法存在缺点,即mRNA疫苗需要特殊的储存条件,这使得它们的可及性较低。这种不稳定性是由于mRNA的5'端和3'端是普遍存在的外切核糖核酸酶的底物。为了解决这个问题,人们提出了环状mRNA用于转基因递送,因为它们没有这些末端。值得注意的是,环状RNA没有加帽的5'端,这使得无法以经典方式起始翻译。在这篇综述中,我们总结了目前关于不依赖帽结构的翻译起始方法的知识,并讨论了哪些方法在开发基于环状mRNA的疫苗和其他生物技术产品方面可能最有效。