Enzymatic characterization and homology model of a catalytically active recombinant West Nile virus NS3 protease
Data(s) |
01/01/2004
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Resumo |
West Nile Virus (WNV) is a mosquito-borne flavivirus with a rapidly expanding global distribution. Infection causes severe neurological disease and fatalities in both human and animal hosts. The West Nile viral protease (NS2B-NS3) is essential for post-translational processing in host-infected cells of a viral polypeptide precursor into structural and functional viral proteins, and its inhibition could represent a potential treatment for viral infections. This article describes the design, expression, and enzymatic characterization of a catalytically active recombinant WNV protease, consisting of a 40-residue component of cofactor NS2B tethered via a noncleavable nonapeptide (G(4)SG(4)) to the N-terminal 184 residues of NS3. A chromogenic assay using synthetic para-nitroanilide (pNA) hexapeptide substrates was used to identify optimal enzyme-processing conditions (pH 9.5, I < 0.1 M, 30% glycerol, 1 mM CHAPS), preferred substrate cleavage sites, and the first competitive inhibitor (Ac-FASGKR- H, IC50 &SIM; 1 μM). A putative three-dimensional structure of WNV protease, created through homology modeling based on the crystal structures of Dengue-2 and Hepatitis C NS3 viral proteases, provides some valuable insights for structure-based design of potent and selective inhibitors of WNV protease. |
Identificador | |
Idioma(s) |
eng |
Publicador |
American Soc Biochemistry Molecular Biology Inc |
Palavras-Chave | #Biochemistry & Molecular Biology #Molecular Recognition #Proteolytic-enzymes #Structural-analysis #Serine-protease #Ns2b Cofactor #Drug Design #Inhibitors #Site #Conformation #Proteinase #C1 #250301 Organic Chemical Synthesis #780103 Chemical sciences |
Tipo |
Journal Article |