Cryo-EM structure of the fully assembled Elongator complex

Author:

Jaciuk Marcin1,Scherf David2,Kaszuba Karol34,Gaik Monika1ORCID,Rau Alexander5,Kościelniak Anna1,Krutyhołowa Rościsław1,Rawski Michał16,Indyka Paulina16,Graziadei Andrea5,Chramiec-Głąbik Andrzej1,Biela Anna1,Dobosz Dominika1,Lin Ting-Yu1,Abbassi Nour-el-Hana17,Hammermeister Alexander12,Rappsilber Juri58ORCID,Kosinski Jan349ORCID,Schaffrath Raffael2ORCID,Glatt Sebastian1ORCID

Affiliation:

1. Malopolska Centre of Biotechnology (MCB), Jagiellonian University , Krakow 30-387, Poland

2. Institute for Biology, Department for Microbiology, University of Kassel , Kassel 34132, Germany

3. European Molecular Biology Laboratory Hamburg , Hamburg 22607, Germany

4. Centre for Structural Systems Biology (CSSB) , Hamburg 22607, Germany

5. Bioanalytics, Institute of Biotechnology, Technische Universität Berlin , Berlin 13355, Germany

6. National Synchrotron Radiation Centre SOLARIS, Jagiellonian University , Krakow 30-387, Poland

7. Postgraduate School of Molecular Medicine, Medical University of Warsaw , Warsaw 02-091, Poland

8. Wellcome Centre for Cell Biology, University of Edinburgh , Edinburgh EH9 3BF, UK

9. Structural and Computational Biology Unit, European Molecular Biology Laboratory , Heidelberg 69117, Germany

Abstract

AbstractTransfer RNA (tRNA) molecules are essential to decode messenger RNA codons during protein synthesis. All known tRNAs are heavily modified at multiple positions through post-transcriptional addition of chemical groups. Modifications in the tRNA anticodons are directly influencing ribosome decoding and dynamics during translation elongation and are crucial for maintaining proteome integrity. In eukaryotes, wobble uridines are modified by Elongator, a large and highly conserved macromolecular complex. Elongator consists of two subcomplexes, namely Elp123 containing the enzymatically active Elp3 subunit and the associated Elp456 hetero-hexamer. The structure of the fully assembled complex and the function of the Elp456 subcomplex have remained elusive. Here, we show the cryo-electron microscopy structure of yeast Elongator at an overall resolution of 4.3 Å. We validate the obtained structure by complementary mutational analyses in vitro and in vivo. In addition, we determined various structures of the murine Elongator complex, including the fully assembled mouse Elongator complex at 5.9 Å resolution. Our results confirm the structural conservation of Elongator and its intermediates among eukaryotes. Furthermore, we complement our analyses with the biochemical characterization of the assembled human Elongator. Our results provide the molecular basis for the assembly of Elongator and its tRNA modification activity in eukaryotes.

Funder

OPUS16

National Science Centre

European Research Council

European Union's Horizon

MCB structural biology core facility

Foundation for Polish Science

Otto Braun-Fonds

Deutsche Forschungsgemeinschaft

Jagiellonian University

Publisher

Oxford University Press (OUP)

Subject

Genetics

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