Life Sciences Institute, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Center for Cryo-Electron Microscopy, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310058, China.
Nucleic Acids Res. 2023 Sep 22;51(17):8909-8924. doi: 10.1093/nar/gkad661.
Archaeal ribosomes have many domain-specific features; however, our understanding of these structures is limited. We present 10 cryo-electron microscopy (cryo-EM) structures of the archaeal ribosome from crenarchaeota Sulfolobus acidocaldarius (Sac) at 2.7-5.7 Å resolution. We observed unstable conformations of H68 and h44 of ribosomal RNA (rRNA) in the subunit structures, which may interfere with subunit association. These subunit structures provided models for 12 rRNA expansion segments and 3 novel r-proteins. Furthermore, the 50S-aRF1 complex structure showed the unique domain orientation of aRF1, possibly explaining P-site transfer RNA (tRNA) release after translation termination. Sac 70S complexes were captured in seven distinct steps of the tRNA translocation reaction, confirming conserved structural features during archaeal ribosome translocation. In aEF2-engaged 70S ribosome complexes, 3D classification of cryo-EM data based on 30S head domain identified two new translocation intermediates with 30S head domain tilted 5-6° enabling its disengagement from the translocated tRNA and its release post-translocation. Additionally, we observed conformational changes to aEF2 during ribosome binding and switching from three different states. Our structural and biochemical data provide new insights into archaeal translation and ribosome translocation.
古菌核糖体具有许多特定于结构域的特征;然而,我们对这些结构的理解是有限的。我们展示了来自 crenarchaeota Sulfolobus acidocaldarius(Sac)的古菌核糖体的 10 个 cryo-electron microscopy(cryo-EM)结构,分辨率为 2.7-5.7 Å。我们观察到亚基结构中 rRNA(rRNA)的 H68 和 h44 不稳定构象,这可能会干扰亚基结合。这些亚基结构为 12 个 rRNA 扩展片段和 3 个新的 r 蛋白提供了模型。此外,50S-aRF1 复合物结构显示了 aRF1 的独特结构域取向,可能解释了翻译终止后 P 位 tRNA(tRNA)的释放。Sac 70S 复合物在 tRNA 易位反应的七个不同步骤中被捕获,证实了古菌核糖体易位过程中保守的结构特征。在 aEF2 结合的 70S 核糖体复合物中,基于 30S 头部结构的 cryo-EM 数据的 3D 分类确定了两个新的易位中间物,其 30S 头部结构倾斜 5-6°,从而使其与易位 tRNA 脱离并在易位后释放。此外,我们观察到 aEF2 在核糖体结合和从三种不同状态切换过程中的构象变化。我们的结构和生化数据为古菌翻译和核糖体易位提供了新的见解。