核糖核苷
毛细管作用
色谱法
质谱法
生物分子
核苷
分辨率(逻辑)
核糖核酸
核酸
分析化学(期刊)
生物
化学
纳米技术
材料科学
生物化学
计算机科学
人工智能
复合材料
基因
作者
L. Peter Sarin,Sandra D. Kienast,Johannes Leufken,Robert Ross,Agnieszka Dziergowska,Katarzyna Debiec,Elżbieta Sochacka,Patrick A. Limbach,Christian Fufezan,Hannes C. A. Drexler,Sebastian A. Leidel
出处
期刊:RNA
[Cold Spring Harbor Laboratory Press]
日期:2018-07-16
卷期号:24 (10): 1403-1417
被引量:49
标识
DOI:10.1261/rna.065482.117
摘要
Post-transcriptional chemical modifications of (t)RNA molecules are crucial in fundamental biological processes, such as translation. Despite their biological importance and accumulating evidence linking them to various human diseases, technical challenges have limited their detection and accurate quantification. Here, we present a sensitive capillary nanoflow liquid chromatography mass spectrometry (nLC-MS) pipeline for quantitative high-resolution analysis of ribonucleoside modifications from complex biological samples. We evaluated two porous graphitic carbon (PGC) materials and one end-capped C18 reference material as stationary phases for reversed-phase separation. We found that these matrices have complementing retention and separation characteristics, including the capability to separate structural isomers. PGC and C18 matrices yielded excellent signal-to-noise ratios in nLC-MS while differing in the separation capability and sensitivity for various nucleosides. This emphasizes the need for tailored LC-MS setups for optimally detecting as many nucleoside modifications as possible. Detection ranges spanning up to six orders of magnitude enable the analysis of individual ribonucleosides down to femtomol concentrations. Furthermore, normalizing the obtained signal intensities to a stable isotope labeled spike-in enabled direct comparison of ribonucleoside levels between different samples. In conclusion, capillary columns coupled to nLC-MS constitute a powerful and sensitive tool for quantitative analysis of modified ribonucleosides in complex biological samples. This setup will be invaluable for further unraveling the intriguing and multifaceted biological roles of RNA modifications.
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