Department of Biochemistry, University of Zurich, Zurich 8057, Switzerland.
Institute of Molecular Biotechnology, IMBA, Vienna Biocenter Campus (VBC), Vienna 1030, Austria.
Nucleic Acids Res. 2019 Jan 25;47(2):1030-1042. doi: 10.1093/nar/gky1164.
Non-templated 3'-uridylation of RNAs has emerged as an important mechanism for regulating the processing, stability and biological function of eukaryotic transcripts. In Drosophila, oligouridine tailing by the terminal uridylyl transferase (TUTase) Tailor of numerous RNAs induces their degradation by the exonuclease Dis3L2, which serves functional roles in RNA surveillance and mirtron RNA biogenesis. Tailor preferentially uridylates RNAs terminating in guanosine or uridine nucleotides but the structural basis underpinning its RNA substrate selectivity is unknown. Here, we report crystal structures of Tailor bound to a donor substrate analog or mono- and oligouridylated RNA products. These structures reveal specific amino acid residues involved in donor and acceptor substrate recognition, and complementary biochemical assays confirm the critical role of an active site arginine in conferring selectivity toward 3'-guanosine terminated RNAs. Notably, conservation of these active site features suggests that other eukaryotic TUTases, including mammalian TUT4 and TUT7, might exhibit similar, hitherto unknown, substrate selectivity. Together, these studies provide critical insights into the specificity of 3'-uridylation in eukaryotic post-transcriptional gene regulation.
非模板化 3'-尿苷酸化已成为调节真核转录本加工、稳定性和生物学功能的重要机制。在果蝇中,许多 RNA 的末端尿苷酰转移酶(TUTase)Tailor 的寡尿苷酸化尾巴诱导它们被外切酶 Dis3L2 降解,后者在 RNA 监测和 mirtron RNA 生物发生中发挥功能作用。Tailor 优先尿苷酸化以鸟苷或尿苷核苷酸结尾的 RNA,但支持其 RNA 底物选择性的结构基础尚不清楚。在这里,我们报告了 Tailor 与供体底物类似物或单聚和寡聚尿苷酸化 RNA 产物结合的晶体结构。这些结构揭示了参与供体和受体底物识别的特定氨基酸残基,互补的生化测定证实了活性位点精氨酸在赋予对 3'-鸟苷终止 RNA 的选择性方面的关键作用。值得注意的是,这些活性位点特征的保守性表明,其他真核 TUTase,包括哺乳动物 TUT4 和 TUT7,可能表现出类似的、迄今未知的底物选择性。总之,这些研究为真核转录后基因调控中的 3'-尿苷酸化特异性提供了重要的见解。