Institute of Microbiology & Archaea Centre, Single-Molecule Biochemistry Lab, University of Regensburg, 93053, Regensburg, Germany.
Department of Pharmacology and Toxicology, Institute of Pharmacy, University of Regensburg, 93053, Regensburg, Germany.
Nat Commun. 2022 Jul 2;13(1):3825. doi: 10.1038/s41467-022-31480-4.
Human Argonaute 2 (hAgo2) constitutes the functional core of the RNA interference pathway. Guide RNAs direct hAgo2 to target mRNAs, which ultimately leads to hAgo2-mediated mRNA degradation or translational inhibition. Here, we combine site-specifically labeled hAgo2 with time-resolved single-molecule FRET measurements to monitor conformational states and dynamics of hAgo2 and hAgo2-RNA complexes in solution that remained elusive so far. We observe dynamic anchoring and release of the guide's 3'-end from the PAZ domain during the stepwise target loading process even with a fully complementary target. We find differences in structure and dynamic behavior between partially and fully paired canonical hAgo2-guide/target complexes and the miRNA processing complex formed by hAgo2 and pre-miRNA451. Furthermore, we detect a hitherto unknown conformation of hAgo2-guide/target complexes that poises them for target-directed miRNA degradation. Taken together, our results show how the conformational flexibility of hAgo2-RNA complexes determines function and the fate of the ribonucleoprotein particle.
人源 Argonaute 2(hAgo2)构成了 RNA 干扰途径的功能核心。引导 RNA 指导 hAgo2 靶向 mRNAs,最终导致 hAgo2 介导的 mRNA 降解或翻译抑制。在这里,我们将标记有特定位置的 hAgo2 与时间分辨的单分子 FRET 测量相结合,以监测 hAgo2 和 hAgo2-RNA 复合物在溶液中的构象状态和动力学,这些状态和动力学迄今为止仍然难以捉摸。我们观察到在逐步靶标加载过程中,引导物的 3'-末端从 PAZ 结构域动态锚定和释放,即使存在完全互补的靶标也是如此。我们发现部分和完全配对的典型 hAgo2 引导物/靶标复合物与由 hAgo2 和 pre-miRNA451 形成的 miRNA 加工复合物之间在结构和动态行为上存在差异。此外,我们检测到 hAgo2 引导物/靶标复合物的一种迄今未知的构象,使它们能够靶向 miRNA 降解。总之,我们的研究结果表明 hAgo2-RNA 复合物的构象灵活性如何决定核糖核蛋白颗粒的功能和命运。