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J. Virol., 04 1997, 2881-2886, Vol 71, No. 4
M Stempniak, Z Hostomska, BR Nodes and Z Hostomsky
NS3 proteinase of hepatitis C virus (HCV), contained within the N- terminal
domain of the NS3 protein, is a chymotrypsin-like serine proteinase
responsible for processing of the nonstructural region of the HCV
polyprotein. In this study, we examined the sensitivity of the NS3
proteinase to divalent metal ions, which is unusual behavior for this
proteinase class. By using a cell-free coupled transcription- translation
system, we found that HCV polyprotein processing can be activated by Zn2+
(and, to a lesser degree, by Cd2+, Pb2+, and Co2+) and inhibited by Cu2+
and Hg2+ ions. Elemental analysis of the purified NS3 proteinase domain
revealed the presence of zinc in an equimolar ratio. The zinc content was
unchanged in a mutated NS3 proteinase in which active-site residues His-57
and Ser-139 were replaced with Ala, suggesting that the zinc atom is not
directly involved in catalysis but rather may have a structural role. Based
on data from site-directed mutagenesis combined with zinc content
determination, we propose that Cys-97, Cys-99, Cys-145, and His-149
coordinate the structural zinc in the HCV NS3 proteinase. A similar metal
binding motif is found in 2A proteinases of enteroviruses and rhinoviruses,
suggesting that these 2A proteinases and HCV NS3 proteinase are
structurally related.
Copyright © 1997, American Society for Microbiology
The NS3 proteinase domain of hepatitis C virus is a zinc-containing enzyme
Agouron Pharmaceuticals, Inc., San Diego, California 92121, USA.
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