Unti Mildred J, Jaffrey Samie R
bioRxiv. 2023 Jul 11:2023.07.11.548538. doi: 10.1101/2023.07.11.548538.
A major problem with mRNA therapeutics is the limited duration of protein expression due to the short half-life of mRNA. New approaches for generating highly stable circular mRNA in vitro have allowed increased duration of protein expression. However, it remains difficult to genetically encode circular mRNAs in mammalian cells, which limits the use of circular mRNA in cell-derived therapeutics. Here we describe the adaptation of the Tornado (Twister-optimized RNA for durable overexpression) system to achieve in-cell synthesis of circular mRNAs. We identify the promoter and internal ribosomal entry site (IRES) that result in high levels of protein expression in cells. We then show that these circular mRNAs can be packaged into virus-like particles (VLPs) thus enabling prolonged protein expression. Overall, these data describe a platform for synthesis of circular mRNAs and how these circular mRNAs can markedly enhance the ability of VLPs to function as a mRNA delivery tool.
信使核糖核酸(mRNA)疗法的一个主要问题是,由于mRNA半衰期短,蛋白质表达的持续时间有限。体外生成高度稳定的环状mRNA的新方法延长了蛋白质表达的持续时间。然而,在哺乳动物细胞中对环状mRNA进行基因编码仍然很困难,这限制了环状mRNA在细胞衍生疗法中的应用。在此,我们描述了对龙卷风(Tornado,即优化的用于持久过表达的扭曲RNA)系统的改造,以实现细胞内环状mRNA的合成。我们确定了能在细胞中导致高水平蛋白质表达的启动子和内部核糖体进入位点(IRES)。然后我们证明,这些环状mRNA可以被包装成病毒样颗粒(VLP),从而实现蛋白质的长期表达。总体而言,这些数据描述了一个合成环状mRNA的平台,以及这些环状mRNA如何显著增强VLP作为mRNA递送工具的功能。