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Structural basis for 2'-5'-oligoadenylate binding and enzyme activity of a viral RNase L antagonist.

J. Virol.. 2015; 
OgdenKristen M,HuLiya,JhaBabal K,SankaranBanumathi,WeissSusan R,SilvermanRobert H,PattonJohn T,PrasadB V Venkat
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Gene Synthesis and the CTD (amino acids 652 to 768) of RVG 03V0567 VP3 (GenBank JQ920005) were synthesized by Genscript (Piscataway, NJ). Get A Quote

Abstract

Synthesis of 2'-5'-oligoadenylates (2-5A) by oligoadenylate synthetase (OAS) is an important innate cellular response that limits viral replication by activating the latent cellular RNase, RNase L, to degrade single-stranded RNA. Some rotaviruses and coronaviruses antagonize the OAS/RNase L pathway through the activity of an encoded 2H phosphoesterase domain that cleaves 2-5A. These viral 2H phosphoesterases are phylogenetically related to the cellular A kinase anchoring protein 7 (AKAP7) and share a core structure and an active site that contains two well-defined HΦ(S/T)Φ (where Φ is a hydrophobic residue) motifs, but their mechanism of substrate binding is unknown. Here, we report the structures of... More

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