Department of Chemistry, Ludwig-Maximilians-University Munich, Butenandtstr. 5-13, 81377, Munich, Germany.
Université de Lorraine, CNRS, Inserm, UMS2008/US40 IBSLor and UMR7365 IMoPA, F-54000, Nancy, France.
Nat Commun. 2021 Jan 15;12(1):389. doi: 10.1038/s41467-020-20576-4.
Recently, studies about RNA modification dynamics in human RNAs are among the most controversially discussed. As a main reason, we identified the unavailability of a technique which allows the investigation of the temporal processing of RNA transcripts. Here, we present nucleic acid isotope labeling coupled mass spectrometry (NAIL-MS) for efficient, monoisotopic stable isotope labeling in both RNA and DNA in standard cell culture. We design pulse chase experiments and study the temporal placement of modified nucleosides in tRNA and 18S rRNA. In existing RNAs, we observe a time-dependent constant loss of modified nucleosides which is masked by post-transcriptional methylation mechanisms and thus undetectable without NAIL-MS. During alkylation stress, NAIL-MS reveals an adaptation of tRNA modifications in new transcripts but not existing ones. Overall, we present a fast and reliable stable isotope labeling strategy which allows in-depth study of RNA modification dynamics in human cell culture.
最近,有关人类 RNA 中 RNA 修饰动态的研究是讨论最多的争议之一。主要原因是,我们还没有找到一种技术可以研究 RNA 转录本的时间处理过程。在这里,我们提出了核酸同位素标记结合质谱(NAIL-MS)技术,可在标准细胞培养中对 RNA 和 DNA 进行高效、单同位素稳定同位素标记。我们设计了脉冲追踪实验,并研究了 tRNA 和 18S rRNA 中修饰核苷的时间定位。在现有的 RNA 中,我们观察到修饰核苷随时间的恒定损失,但被转录后甲基化机制掩盖,因此如果没有 NAIL-MS,这些修饰核苷将无法检测到。在烷基化应激过程中,NAIL-MS 揭示了新转录本中 tRNA 修饰的适应性,但不包括现有转录本。总的来说,我们提出了一种快速可靠的稳定同位素标记策略,可深入研究人细胞培养中 RNA 修饰动态。