Crystal Structure and Functional Analysis of the SARS-Coronavirus RNA Cap 2′-O-Methyltransferase nsp10/nsp16 Complex

Étienne Decroly(Architecture et Fonction des Macromolécules Biologiques), Claire Debarnot(Architecture et Fonction des Macromolécules Biologiques), François Ferrón(Architecture et Fonction des Macromolécules Biologiques), Mickaël Bouvet(Architecture et Fonction des Macromolécules Biologiques), Bruno Coutard(Architecture et Fonction des Macromolécules Biologiques), Isabelle Imbert(Architecture et Fonction des Macromolécules Biologiques), Laure Gluais(Architecture et Fonction des Macromolécules Biologiques), Nicolas Papageorgiou(Architecture et Fonction des Macromolécules Biologiques), Andrew Sharff(Global Phasing (United Kingdom)), G. Bricogne(Global Phasing (United Kingdom)), M. Ortiz-Lombardı́a(Architecture et Fonction des Macromolécules Biologiques), Julien Lescar(Nanyang Technological University), Bruno Canard(Architecture et Fonction des Macromolécules Biologiques)
PLoS Pathogens
May 26, 2011
Cited by 385Open Access
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Abstract

Cellular and viral S-adenosylmethionine-dependent methyltransferases are involved in many regulated processes such as metabolism, detoxification, signal transduction, chromatin remodeling, nucleic acid processing, and mRNA capping. The Severe Acute Respiratory Syndrome coronavirus nsp16 protein is a S-adenosylmethionine-dependent (nucleoside-2'-O)-methyltransferase only active in the presence of its activating partner nsp10. We report the nsp10/nsp16 complex structure at 2.0 Å resolution, which shows nsp10 bound to nsp16 through a ∼930 Ų surface area in nsp10. Functional assays identify key residues involved in nsp10/nsp16 association, and in RNA binding or catalysis, the latter likely through a SN2-like mechanism. We present two other crystal structures, the inhibitor Sinefungin bound in the S-adenosylmethionine binding pocket and the tighter complex nsp10(Y96F)/nsp16, providing the first structural insight into the regulation of RNA capping enzymes in +RNA viruses.


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