Division of Cell and Developmental Biology, Center for Anatomy and Cell Biology, Medical University of Vienna, Schwarzspanierstr. 17-I, A-1090 Vienna, Austria.
RNA Networks Laboratory, Francis Crick Institute, London, UK.
Nucleic Acids Res. 2023 Feb 22;51(3):1326-1352. doi: 10.1093/nar/gkad033.
Stress-induced tRNA fragmentation upon environmental insult is a conserved cellular process catalysed by endonucleolytic activities targeting mature tRNAs. The resulting tRNA-derived small RNAs (tsRNAs) have been implicated in various biological processes that impact cell-to-cell signalling, cell survival as well as gene expression regulation during embryonic development. However, how endonuclease-targeted tRNAs give rise to individual and potentially biologically active tsRNAs remains poorly understood. Here, we report on the in vivo identification of proteins associated with stress-induced tsRNAs-containing protein complexes, which, together with a 'tracer tRNA' assay, were used to uncover enzymatic activities that can bind and process specific endonuclease-targeted tRNAs in vitro. Among those, we identified conserved ATP-dependent RNA helicases which can robustly separate tRNAs with endonuclease-mediated 'nicks' in their anticodon loops. These findings shed light on the existence of cellular pathways dedicated to producing individual tsRNAs after stress-induced tRNA hydrolysis, which adds to our understanding as to how tRNA fragmentation and the resulting tsRNAs might exert physiological impact.
环境胁迫诱导的 tRNA 片段化是一种保守的细胞过程,由靶向成熟 tRNA 的内切核酸酶活性催化。由此产生的 tRNA 衍生的小 RNA(tsRNA)已被牵涉到多种生物学过程中,这些过程影响细胞间信号转导、细胞存活以及胚胎发育过程中的基因表达调控。然而,内切核酸酶靶向的 tRNA 如何产生单个的、具有潜在生物学活性的 tsRNA 仍然知之甚少。在这里,我们报告了与应激诱导的含 tsRNA 蛋白复合物相关的蛋白质的体内鉴定,这些蛋白质与“示踪 tRNA”测定法一起,被用于揭示能够在体外结合和处理特定内切核酸酶靶向 tRNA 的酶活性。其中,我们鉴定了保守的 ATP 依赖性 RNA 解旋酶,它可以有效地分离在反密码环中具有内切核酸酶介导的“缺口”的 tRNA。这些发现揭示了在应激诱导的 tRNA 水解后产生单个 tsRNA 的细胞途径的存在,这增加了我们对 tRNA 片段化和由此产生的 tsRNA 如何发挥生理影响的理解。