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Mechanism of activation of beta-D-2'-deoxy-2'-fluoro-2'-c-methylcytidine and inhibition of hepatitis C virus NS5B RNA polymerase.
- Source :
-
Antimicrobial agents and chemotherapy [Antimicrob Agents Chemother] 2007 Feb; Vol. 51 (2), pp. 503-9. Date of Electronic Publication: 2006 Nov 13. - Publication Year :
- 2007
-
Abstract
- Beta-D-2'-deoxy-2'-fluoro-2'-C-methylcytidine (PSI-6130) is a potent specific inhibitor of hepatitis C virus (HCV) RNA synthesis in Huh-7 replicon cells. To inhibit the HCV NS5B RNA polymerase, PSI-6130 must be phosphorylated to the 5'-triphosphate form. The phosphorylation of PSI-6130 and inhibition of HCV NS5B were investigated. The phosphorylation of PSI-6130 by recombinant human 2'-deoxycytidine kinase (dCK) and uridine-cytidine kinase 1 (UCK-1) was measured by using a coupled spectrophotometric reaction. PSI-6130 was shown to be a substrate for purified dCK, with a Km of 81 microM and a kcat of 0.007 s-1, but was not a substrate for UCK-1. PSI-6130 monophosphate (PSI-6130-MP) was efficiently phosphorylated to the diphosphate and subsequently to the triphosphate by recombinant human UMP-CMP kinase and nucleoside diphosphate kinase, respectively. The inhibition of wild-type and mutated (S282T) HCV NS5B RNA polymerases was studied. The steady-state inhibition constant (Ki) for PSI-6130 triphosphate (PSI-6130-TP) with the wild-type enzyme was 4.3 microM. Similar results were obtained with 2'-C-methyladenosine triphosphate (Ki=1.5 microM) and 2'-C-methylcytidine triphosphate (Ki=1.6 microM). NS5B with the S282T mutation, which is known to confer resistance to 2'-C-methyladenosine, was inhibited by PSI-6130-TP as efficiently as the wild type. Incorporation of PSI-6130-MP into RNA catalyzed by purified NS5B RNA polymerase resulted in chain termination.
- Subjects :
- Antiviral Agents metabolism
Antiviral Agents pharmacology
Catalysis
Deoxycytidine chemistry
Deoxycytidine metabolism
Deoxycytidine pharmacology
Hepacivirus drug effects
Hepatitis C drug therapy
Hepatitis C virology
Humans
Mutation
Phosphorylation
RNA, Viral drug effects
RNA, Viral metabolism
RNA-Dependent RNA Polymerase antagonists & inhibitors
Structure-Activity Relationship
Virus Replication drug effects
Deoxycytidine analogs & derivatives
Hepacivirus metabolism
Viral Nonstructural Proteins antagonists & inhibitors
Subjects
Details
- Language :
- English
- ISSN :
- 0066-4804
- Volume :
- 51
- Issue :
- 2
- Database :
- MEDLINE
- Journal :
- Antimicrobial agents and chemotherapy
- Publication Type :
- Academic Journal
- Accession number :
- 17101674
- Full Text :
- https://doi.org/10.1128/AAC.00400-06