Diving into the Structural Details of In Vitro Transcribed mRNA Using Liquid Chromatography–Mass Spectrometry-Based Oligonucleotide Profiling

Kris Morreel, R. T'kindt, G. Debyser, Stefanie Jonckheere, P. Sandra
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引用次数: 1

Abstract

The production process of in vitro transcribed messenger RNA (IVT-mRNA)-based vaccines has matured in recent years, partly due to the fight against infectious diseases such as COVID-19. One key to success has been the use of modified, next to canonical, nucleotides and the efficient addition of a Cap-structure and poly A tail to the 5’ and 3’ end, respectively, of this massive biomolecule. These important features affect mRNA stability and impact translation efficiency, consequently boosting the optimization and implementation of liquid chromatography–mass spectrometry (LC–MS)-based oligonucleotide profiling methods for their characterization. This article will provide an overview of these LC–MS methods at a fundamental and application level. It will be shown how LC–MS is implemented in mRNA-based vaccine analysis to determine the capping efficiency and the poly A tail length, and how it allows, via RNA mapping, (i) to determine the mRNA sequence, (ii) to screen the fidelity of the manufactured modifications, and (iii) to identify and quantify unwanted modifications resulting from manufacturing or storage, and sequence variants resulting from mutation or transcription errors.
利用液相色谱-质谱法深入研究体外转录mRNA的结构细节
近年来,体外转录信使RNA (IVT-mRNA)疫苗的生产工艺已经成熟,部分原因是与COVID-19等传染病的斗争。成功的一个关键是使用了经过修饰的核苷酸,以及在这种巨大的生物分子的5 '和3 '端分别有效地添加了cap结构和poly a尾部。这些重要特征影响mRNA的稳定性和翻译效率,从而促进了基于液相色谱-质谱(LC-MS)的寡核苷酸分析方法的优化和实施。本文将从基础和应用层面概述这些LC-MS方法。将展示LC-MS如何在基于mRNA的疫苗分析中实施,以确定capping效率和poly - A尾部长度,以及它如何通过RNA作图(i)确定mRNA序列,(ii)筛选制造修饰的保真度,以及(iii)识别和量化因制造或储存而产生的不需要的修饰,以及由突变或转录错误导致的序列变异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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