National Institute of Biological Sciences, Beijing 102206, China.
Tsinghua Institute of Multidisciplinary Biomedical Research, Tsinghua University, Beijing 100084, China.
J Am Soc Mass Spectrom. 2023 Aug 2;34(8):1598-1608. doi: 10.1021/jasms.3c00073. Epub 2023 Jul 18.
Mass spectrometry (MS)-based analysis of RNA oligonucleotides (oligos) plays an increasingly important role in the development of RNA therapeutics and epitranscriptomics research. However, MS fragmentation behaviors of RNA oligomers are understood insufficiently. Herein, we characterized the negative-ion-mode fragmentation behaviors of 26 synthetic RNA oligos containing four to eight nucleotides using collision-induced dissociation (CID) on a high-resolution, accurate-mass instrument. We found that in CID spectra acquired under the normalized collision energy (NCE) of 35%, approximately 70% of the total peak intensity was attributed to sequencing ions (, , , , , , , , ), around 25% of the peak intensity came from precursor ions that experienced complete or partial loss of a nucleobase in the form of either a neutral or an anion, and the remainder were internal ions and anionic nucleobases. The top five sequencing ions were the , , , , and ions. Furthermore, we observed that CID fragmentation behaviors of RNA oligos were significantly impacted by their precursor charge. Specifically, when the precursors had a charge from 1 to 5, the fractional intensity of sequencing ions decreased, while that of precursors that underwent either neutral or charged losses of a nucleobase increased. Additionally, we found that RNA oligos containing 3'-U tended to produce precursors with HNCO and/or NCO losses, which presumably corresponded to isocyanic acid and cyanate anion, respectively. These findings provide valuable insights for better comprehending the mechanism behind RNA fragmentation by MS/MS, thereby facilitating the future automated identification of RNA oligos based on their CID spectra in a more efficient manner.
基于质谱(MS)的 RNA 寡核苷酸(oligos)分析在 RNA 治疗学和转录后修饰组学研究的发展中发挥着越来越重要的作用。然而,RNA 寡聚物的 MS 碎裂行为还没有被充分理解。在此,我们使用高分辨率、精确质量仪器的碰撞诱导解离(CID)对包含四个到八个核苷酸的 26 种合成 RNA 寡核苷酸的负离子模式碎裂行为进行了表征。我们发现,在归一化碰撞能(NCE)为 35%的 CID 谱中,大约 70%的总峰强度归因于测序离子(、、、、、、、、),约 25%的峰强度来自经历完整或部分碱基丢失的前体离子,其形式为中性或阴离子,其余的则是内部离子和阴离子碱基。前五名测序离子是、、、、和离子。此外,我们观察到 RNA 寡核苷酸的 CID 碎裂行为受到其前体电荷的显著影响。具体来说,当前体电荷为 1 到 5 时,测序离子的分数强度降低,而经历碱基中性或带电荷丢失的前体离子的强度增加。此外,我们发现含有 3'-U 的 RNA 寡核苷酸倾向于产生具有 HNCO 和/或 NCO 丢失的前体,这可能分别对应于异氰酸和氰酸根阴离子。这些发现为更好地理解 MS/MS 中 RNA 碎裂的机制提供了有价值的见解,从而能够更有效地基于 CID 谱自动识别 RNA 寡核苷酸。