Structural basis and dynamics of Chikungunya alphavirus RNA capping by nsP1 capping pores

Author:

Jones Rhian1ORCID,Hons Michael2,Rabah Nadia1ORCID,Zamarreño Noelia3ORCID,Arranz Rocío3ORCID,Reguera Juan14ORCID

Affiliation:

1. Aix-Marseille Université, CNRS, Architecture et Fonction des Macromolécules Biologiques UMR 7257, 13288 Marseille, France

2. European Molecular Biology Laboratory, 38042 Grenoble Cedex 9, France

3. National Center of Biotechnology, Consejo Superior de Investigaciones Cientificas, 28049 Madrid, Spain

4. INSERM, Architecture et Fonction des Macromolécules Biologiques UMR 7257, 13288 Marseille, France

Abstract

Alphaviruses are emerging positive-stranded RNA viruses which replicate and transcribe their genomes in membranous organelles formed in the cell cytoplasm. The nonstructural protein 1 (nsP1) is responsible for viral RNA capping and gates the replication organelles by assembling into monotopic membrane-associated dodecameric pores. The capping pathway is unique to Alphaviruses; beginning with the N 7 methylation of a guanosine triphosphate (GTP) molecule, followed by the covalent linkage of an m 7 GMP group to a conserved histidine in nsP1 and the transfer of this cap structure to a diphosphate RNA. Here, we provide structural snapshots of different stages of the reaction pathway showing how nsP1 pores recognize the substrates of the methyl-transfer reaction, GTP and S-adenosyl methionine (SAM), how the enzyme reaches a metastable postmethylation state with SAH and m 7 GTP in the active site, and the subsequent covalent transfer of m 7 GMP to nsP1 triggered by the presence of RNA and postdecapping reaction conformational changes inducing the opening of the pore. In addition, we biochemically characterize the capping reaction, demonstrating specificity for the RNA substrate and the reversibility of the cap transfer resulting in decapping activity and the release of reaction intermediates. Our data identify the molecular determinants allowing each pathway transition, providing an explanation for the need for the SAM methyl donor all along the pathway and clues about the conformational rearrangements associated to the enzymatic activity of nsP1. Together, our results set ground for the structural and functional understanding of alphavirus RNA-capping and the design of antivirals.

Funder

ATIP Avenir

Fondation Bettencourt Schueller

Instruct ERIC short term fellowship

French Infrastructure for Integrated Structural Biology

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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