Biomolecular Characterization Unit, RIKEN Center for Sustainable Resource Science, Wako-shi, Saitama 351-0198, Japan.
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University, Hachioji-shi, Tokyo 192-0397, Japan.
Anal Chem. 2023 Jan 17;95(2):1366-1375. doi: 10.1021/acs.analchem.2c04323. Epub 2022 Dec 27.
mRNA-based medicines are a promising modality for preventing virus-caused illnesses, including COVID-19, and treating various types of cancer and genetic diseases. To develop such medicines, methods to characterize long mRNA molecules are needed for quality control and metabolic analysis. Here, we developed an analytical platform based on isotope-dilution liquid chromatography-mass spectrometry (LC-MS) that quantitatively characterizes long, modified mRNAs by comparing them to a stable isotope-labeled reference with an identical sequence to that of the target medicine. This platform also includes database searching using the mass spectra as a query, which allowed us to confirm the primary structures of 200 to 4300 nt mRNAs including chemical modifications, with sequence coverage at 100%, to detect/identify defects in the sequences, and to define the efficiencies of the 5'-capping and integrity of the polyadenylated tail. Our findings indicated that this platform should be valuable for quantitatively characterizing mRNA vaccines and other mRNA medicines.
基于 mRNA 的药物是预防病毒引起的疾病(包括 COVID-19)和治疗各种类型癌症和遗传疾病的一种有前途的方式。为了开发这类药物,需要对长的 mRNA 分子进行特征分析,以进行质量控制和代谢分析。在这里,我们开发了一种基于同位素稀释液相色谱-质谱(LC-MS)的分析平台,通过将其与与目标药物具有相同序列的稳定同位素标记的参比物质进行比较,对长的、修饰的 mRNAs 进行定量分析。该平台还包括使用质谱作为查询进行数据库搜索,这使我们能够确认 200 至 4300 个核苷酸的 mRNAs 的一级结构,包括化学修饰,序列覆盖率为 100%,以检测/鉴定序列中的缺陷,并确定 5'-加帽效率和聚腺苷酸化尾的完整性。我们的研究结果表明,该平台对于定量表征 mRNA 疫苗和其他 mRNA 药物应该是有价值的。