Kozarski Mateusz, Drazkowska Karolina, Bednarczyk Marcelina, Warminski Marcin, Jemielity Jacek, Kowalska Joanna
Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw Pasteura 5 02-093 Warsaw Poland
Centre of New Technologies, University of Warsaw Banacha 2c 02-097 Warsaw Poland
RSC Adv. 2023 Apr 25;13(19):12809-12824. doi: 10.1039/d3ra00026e. eCollection 2023 Apr 24.
Messenger RNA (mRNA)-based gene delivery is a powerful strategy for the development of vaccines and therapeutics. Consequently, approaches that enable efficient synthesis of mRNAs with high purity and biological activity are in demand. Chemically modified 7-methylguanosine (mG) 5' caps can augment the translational properties of mRNA; however, efficient synthesis of structurally complex caps, especially on a large scale, is challenging. Previously, we proposed a new strategy to assemble dinucleotide mRNA caps by replacing the traditional pyrophosphate bond formation by copper-catalyzed azide-alkyne cycloaddition (CuAAC). Here, we used CuAAC to synthesize 12 novel triazole-containing tri- and tetranucleotide cap analogs with the aim of exploring the chemical space around the first transcribed nucleotide in mRNA and overcoming some of the limitations previously reported for the triazole-containing dinucleotide analogs. We evaluated the efficiency of incorporation into RNA for these analogs and their influence on the translational properties of transcribed (IVT) mRNAs in rabbit reticulocyte lysate and JAWS II cultured cells. The incorporation of the triazole moiety within the 5',5'-oligophosphate of trinucleotide cap produced compounds that were well incorporated into RNA by T7 polymerase while replacing the 5',3'-phosphodiester bond with triazole impaired incorporation and translation efficiency, despite a neutral effect on the interaction with the translation initiation factor eIF4E. One of the compounds (mGppp-tr-CHpApG), had translational activity and other biochemical properties comparable to natural cap 1 structure, thus being a promising mRNA capping reagent for potential in cellulo and applications in the field of mRNA-based therapeutics.
基于信使核糖核酸(mRNA)的基因递送是疫苗和治疗药物开发的一项强大策略。因此,人们需要能够高效合成具有高纯度和生物活性的mRNA的方法。化学修饰的7-甲基鸟苷(mG)5'帽可以增强mRNA的翻译特性;然而,高效合成结构复杂的帽,尤其是大规模合成,具有挑战性。此前,我们提出了一种新策略,通过铜催化的叠氮化物-炔烃环加成反应(CuAAC)取代传统的焦磷酸键形成,来组装二核苷酸mRNA帽。在此,我们使用CuAAC合成了12种新型含三唑的三核苷酸和四核苷酸帽类似物,旨在探索mRNA中第一个转录核苷酸周围的化学空间,并克服先前报道的含三唑二核苷酸类似物的一些局限性。我们评估了这些类似物掺入RNA的效率及其对兔网织红细胞裂解物和JAWS II培养细胞中转录(IVT)mRNA翻译特性的影响。三核苷酸帽的5',5'-寡磷酸内三唑部分的掺入产生了能被T7聚合酶很好地掺入RNA的化合物,而用三唑取代5',3'-磷酸二酯键则损害了掺入和翻译效率,尽管对与翻译起始因子eIF4E的相互作用有中性影响。其中一种化合物(mGppp-tr-CHpApG)具有与天然帽1结构相当的翻译活性和其他生化特性,因此是一种有前景的mRNA加帽试剂,可用于潜在的细胞内应用以及基于mRNA的治疗领域。