Department of Biological and Chemical Sciences, New York Institute of Technology, New York, New York 10023, United States.
Molecular Medicine Program, Department of Human Genetics, and Division of Urology, Department of Surgery, University of Utah School of Medicine, Salt Lake City, Utah 84132, United States.
J Am Chem Soc. 2024 Sep 18;146(37):25600-25613. doi: 10.1021/jacs.4c07280. Epub 2024 Sep 4.
Despite the extensive use of next-generation sequencing (NGS) of RNA, simultaneous direct sequencing and quantitative mapping of multiple RNA nucleotide modifications remains challenging. Mass spectrometry (MS)-based sequencing can directly sequence all RNA modifications without being limited to specific ones, but it requires a perfect MS ladder that few tRNAs can provide. Here, we describe an MS ladder complementation sequencing approach (MLC-Seq) that circumvents the perfect ladder requirement, allowing de novo MS sequencing of full-length heterogeneous cellular tRNAs with multiple nucleotide modifications at single-nucleotide precision. Unlike NGS-based methods, which lose RNA modification information, MLC-Seq preserves RNA sequence diversity and modification information, revealing new detailed stoichiometric tRNA modification profiles and their changes upon treatment with the dealkylating enzyme AlkB. It can also be combined with reference sequences to provide quantitative analysis of diverse tRNAs and modifications in total tRNA samples. MLC-Seq enables systematic, quantitative, and site-specific mapping of RNA modifications, revealing the truly complete informational content of tRNA.
尽管广泛使用了 RNA 的下一代测序(NGS),但同时直接对多个 RNA 核苷酸修饰进行测序和定量映射仍然具有挑战性。基于质谱(MS)的测序可以直接对所有 RNA 修饰进行测序,而不受限于特定的修饰,但它需要一个完美的 MS 梯,而很少有 tRNA 能够提供。在这里,我们描述了一种 MS 梯互补测序方法(MLC-Seq),它规避了完美梯的要求,允许从头开始对全长异质细胞 tRNA 进行单核苷酸精度的多核苷酸修饰的 MS 测序。与基于 NGS 的方法不同,后者会丢失 RNA 修饰信息,而 MLC-Seq 保留了 RNA 序列多样性和修饰信息,揭示了新的详细的、基于计量的 tRNA 修饰谱及其在用脱烷基酶 AlkB 处理后的变化。它还可以与参考序列结合,提供总 tRNA 样品中各种 tRNA 和修饰的定量分析。MLC-Seq 能够对 RNA 修饰进行系统、定量和特异性的映射,揭示 tRNA 的真实完整信息含量。