Site-directed mutagenesis and kinetic studies of the West Nile virus NS3 protease identify key enzyme-substrate interactions


Autoria(s): Chappell, Keith J.; Nall, Tessa A.; Stoermer, Martin J.; Fang, Ning-Xia; Tyndall, Joel D. A.; Fairlie, David P.; Young, Paul R.
Contribuinte(s)

Herbert, T.

Data(s)

28/01/2005

Resumo

The flavivirus West Nile virus (WNV) has spread rapidly throughout the world in recent years causing fever, meningitis, encephalitis, and fatalities. Because the viral protease NS2B/NS3 is essential for replication, it is attracting attention as a potential therapeutic target, although there are currently no antiviral inhibitors for any flavivirus. This paper focuses on elucidating interactions between a hexapeptide substrate (Ae-KPGLKR-p-nitroanilide) and residues at S1 and S2 in the active site of WNV protease by comparing the catalytic activities of selected mutant recombinant proteases in vitro. Homology modeling enabled the predictions of key mutations in VWNV NS3 protease at S1 (V115A/F, D129A/ E/N, S135A, Y150A/F, S160A, and S163A) and S2 (N152A) that might influence substrate recognition and catalytic efficiency. Key conclusions are that the substrate P1 Arg strongly interacts with S1 residues Asp-129, Tyr-150, and Ser-163 and, to a lesser extent, Ser-160, and P2 Lys makes an essential interaction with Asn-152 at S2. The inferred substrate-enzyme interactions provide a basis for rational protease inhibitor design and optimization. High sequence conservation within flavivirus proteases means that this study may also be relevant to design of protease inhibitors for other flavivirus proteases.

Identificador

http://espace.library.uq.edu.au/view/UQ:77447

Idioma(s)

eng

Publicador

The American Society for Biochemistry and Molecular Biology .

Palavras-Chave #Biochemistry & Molecular Biology #Yellow-fever Virus #Crystal-structure #Serine-protease #Cleavage Site #Viral Replication #Homology Model #Ns2b Cofactor #Drug Design #Polyprotein #Proteinase #C1 #320503 Clinical Pharmacology and Therapeutics #780103 Chemical sciences #270100 Biochemistry and Cell Biology #730101 Infectious diseases #270303 Virology #270304 Infectious Agents #270802 Diagnostic Applications #270199 Biochemistry and Cell Biology not elsewhere classified #270708 Conservation and Biodiversity
Tipo

Journal Article