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Putative structural rearrangements associated with the interaction of macrocyclic inhibitors with norovirus 3CL protease
Authors:Anushka C Galasiti Kankanamalage  Pathum M Weerawarna  Athri D Rathnayake  Yunjeong Kim  Nurjahan Mehzabeen  Kevin P Battaile  Scott Lovell  Kyeong-Ok Chang  William C Groutas
Institution:1. Department of Chemistry, Wichita State University, Kansas;2. Department of Diagnostic Medicine & Pathobiology, College of Veterinary Medicine, Kansas State University, Kansas;3. Protein Structure Laboratory, The University of Kansas, Kansas;4. IMCA-CAT, Hauptman-Woodward Medical Research Institute, APS Argonne National Laboratory, Argonne, Illinois
Abstract:Human noroviruses are the primary cause of outbreaks of acute gastroenteritis worldwide. The problem is further compounded by the current lack of norovirus-specific antivirals or vaccines. Noroviruses have a single-stranded, positive sense 7 to 8 kb RNA genome which encodes a polyprotein precursor that is processed by a virus-encoded 3C-like cysteine protease (NV 3CLpro) to generate at least six mature nonstructural proteins. Processing of the polyprotein is essential for virus replication, consequently, NV 3CLpro has emerged as an attractive target for the discovery of norovirus therapeutics and prophylactics. We have recently described the structure-based design of macrocyclic transition state inhibitors of NV 3CLpro. In order to gain insight and understanding into the interaction of macrocyclic inhibitors with the enzyme, as well as probe the effect of ring size on pharmacological activity and cellular permeability, additional macrocyclic inhibitors were synthesized and high resolution cocrystal structures determined. The results of our studies tentatively suggest that the macrocyclic scaffold may hamper optimal binding to the active site by impeding concerted cross-talk between the S2 and S4 subsites.
Keywords:active site  macrocyclic inhibitors  norovirus 3CL protease  structural rearrangement
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