IBMM, UMR 5247 CNRS-UM1-UM2, Université Montpellier 2, 34095 Montpellier cedex 05, France.
RNA. 2012 Apr;18(4):856-68. doi: 10.1261/rna.030932.111. Epub 2012 Feb 14.
The 5' end of eukaryotic mRNA carries a N(7)-methylguanosine residue linked by a 5'-5' triphosphate bond. This cap moiety ((7m)GpppN) is an essential RNA structural modification allowing its efficient translation, limiting its degradation by cellular 5' exonucleases and avoiding its recognition as "nonself" by the innate immunity machinery. In vitro synthesis of capped RNA is an important bottleneck for many biological studies. Moreover, the lack of methods allowing the synthesis of large amounts of RNA starting with a specific 5'-end sequence have hampered biological and structural studies of proteins recognizing the cap structure or involved in the capping pathway. Due to the chemical nature of N(7)-methylguanosine, the synthesis of RNAs possessing a cap structure at the 5' end is still a significant challenge. In the present work, we combined a chemical synthesis method and an enzymatic methylation assay in order to produce large amounts of RNA oligonucleotides carrying a cap-0 or cap-1. Short RNAs were synthesized on solid support by the phosphoramidite 2'-O-pivaloyloxymethyl chemistry. The cap structure was then coupled by the addition of GDP after phosphorylation of the terminal 5'-OH and activation by imidazole. After deprotection and release from the support, GpppN-RNAs or GpppN(2'-Om)-RNAs were purified before the N(7)-methyl group was added by enzymatic means using the human (guanine-N(7))-methyl transferase to yield (7m)GpppN-RNAs (cap-0) or (7m)GpppN(2'-Om)-RNAs (cap-1). The RNAs carrying different cap structures (cap, cap-0 or, cap-1) act as bona fide substrates mimicking cellular capped RNAs and can be used for biochemical and structural studies.
真核生物 mRNA 的 5' 端带有一个通过 5'-5' 三磷酸键连接的 N(7)-甲基鸟苷残基。这个帽状结构((7m)GpppN)是一种必需的 RNA 结构修饰,允许其高效翻译,限制其被细胞 5' 外切核酸酶降解,并避免被先天免疫机制识别为“非自身”。体外合成加帽 RNA 是许多生物学研究的一个重要瓶颈。此外,缺乏允许从特定 5' 端序列起始大量合成 RNA 的方法,阻碍了识别帽结构或参与加帽途径的蛋白质的生物学和结构研究。由于 N(7)-甲基鸟苷的化学性质,在 5' 端具有帽结构的 RNA 的合成仍然是一个重大挑战。在本工作中,我们结合了化学合成方法和酶甲基化测定法,以生产大量带有帽 0 或帽 1 的 RNA 寡核苷酸。短 RNA 通过磷酰胺 2'-O- 异丁酰氧基甲基化学在固体载体上合成。然后,在末端 5'-OH 磷酸化和咪唑激活后,通过添加 GDP 来连接帽结构。脱保护和从载体上释放后,在通过酶法用人类(鸟嘌呤-N(7))-甲基转移酶添加 N(7)-甲基基团之前,对 GpppN-RNAs 或 GpppN(2'-Om)-RNAs 进行纯化,以生成 (7m)GpppN-RNAs(帽 0)或 (7m)GpppN(2'-Om)-RNAs(帽 1)。带有不同帽结构(帽、帽 0 或帽 1)的 RNA 作为模拟细胞加帽 RNA 的真正底物,并可用于生化和结构研究。