๐ Structural and functional analyses of the severe acute respiratory syndrome coronavirus endoribonuclease Nsp15
The severe acute respiratory syndrome (SARS) coronavirus encodes several RNA-processing enzymes that are unusual for RNAviruses, including Nsp15 (nonstructural protein 15), a hexameric endoribonuclease that preferentially cleaves 3โฒ of uridines. We solved the structure of a catalytically inactive mutant version of Nsp15, which was crystallized as a hexamer. The structure contains unreported flexibility in the active site of each subunit. Substitutions in the active site residues serine 293 and proline 343 allowed Nsp15 to cleave at cytidylate, whereas mutation of leucine 345 rendered Nsp15 able to cleave at purines as well as pyrimidines. Mutations that targeted the residues involved in subunit interactions generally resulted in the formation of catalytically inactive monomers. The RNA-binding residues were mapped by a method linking reversible crosslinking, RNA affinity purification, and peptide fingerprinting. Alanine substitution of several residues in the RNA-contacting portion of Nsp15 did not affect hexamer formation but decreased the affinity of RNA binding and reduced endonuclease activity. This suggests a model for Nsp15 hexamer interaction with RNA. ยฉ 2008 by The American Society for Biochemistry and Molecular Biology, Inc.
author
๐ค Bhardwaj, Kanchan
๐ค Palaninathan, Satheesh
๐ค Alcantara, Joanna Maria Ortiz
๐ค Yi, Lillian Li
๐ค Guarino, Linda
๐ค Sacchettini, James C.
๐ค Kao, C. Cheng
year
โฐ 2008
issn
๐ 00219258 1083351X
volume
283
number
6
page
3655-3664
citedbycount
31
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