Cryo-electron microscopy structure and translocation mechanism of the crenarchaeal ribosome

Author:

Wang Ying-Hui1,Dai Hong1,Zhang Ling1,Wu Yun1,Wang Jingfen23,Wang Chen23,Xu Cai-Huang23,Hou Hai4,Yang Bing1ORCID,Zhu Yongqun1,Zhang Xing23,Zhou Jie1ORCID

Affiliation:

1. Life Sciences Institute, Zhejiang University , Hangzhou , Zhejiang 310058, China

2. Center for Cryo-Electron Microscopy, Zhejiang University School of Medicine , Hangzhou , Zhejiang 310058, China

3. Department of Pathology of Sir Run Run Shaw Hospital, and Department of Biophysics, Zhejiang University School of Medicine , Hangzhou , Zhejiang 310058, China

4. Institute of Medical Research, Northwestern Polytechnical University , Xi’an, Shaanxi 710072, China

Abstract

Abstract 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.

Funder

National Natural Science Foundation of China

Zhejiang Provincial Natural Science Foundation

Fundamental Research Funds for the Central Universities

Zhejiang University

Thousand Talents Plan

Publisher

Oxford University Press (OUP)

Subject

Genetics

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