Inhibition of HIV-1 ribonuclease H by a novel diketo acid, 4-[5-(benzoylamino)thien-2-yl]-2,4-dioxobutanoic acid

被引:144
作者
Shaw-Reid, CA
Munshi, V
Graham, P
Wolfe, A
Witmer, M
Danzeisen, R
Olsen, DB
Carroll, SS
Embrey, M
Wai, JS
Miller, MD
Cole, JL
Hazuda, DJ
机构
[1] Merck & Co Inc, Dept Biol Chem, Merck Res Labs, W Point, PA 19486 USA
[2] Merck Res Labs, Dept Med Chem, W Point, PA 19486 USA
关键词
D O I
10.1074/jbc.C200621200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human immunodeficiency virus-type 1 (HIV-1) reverse transcriptase (RT) coordinates DNA polymerization and ribonuclease H (RNase H) activities using two discrete active sites embedded within a single heterodimeric polyprotein. We have identified a novel thiophene diketo acid, 4-[5-(benzoylamino)thien-2-yl]-2,4-dioxobutanoic acid, that selectively inhibits polymerase-independent RNase H cleavage (IC50 = 3.2 mum) but has no effect on DNA polymerization (IC50 > 50 mum). The activity profile of the diketo acid is shown to be distinct from previously described compounds, including the polymerase inhibitor foscarnet and the putative RNase H inhibitor 4-chlorophenylhydrazone. Both foscarnet and the hydrazone inhibit RNase H cleavage and DNA polymerization activities of RT, yet neither inhibits the RNase H activity of RT containing a mutation in the polymerase active site (D185N) or an isolated HIV-1 RNase H domain chimera containing the alpha-C helix from Escherichia coli RNase HI, suggesting these compounds affect RNase H indirectly. In contrast, the diketo acid inhibits the RNase H activity of the isolated RNase H domain as well as full-length RT, and inhibition is not affected by the polymerase active site mutation. In isothermal titration calorimetry studies using the isolated RNase H domain, binding of the diketo acid is independent of nucleic acid but strictly requires Mn2+ implying a direct interaction between the inhibitor and the RNase H active site. These studies demonstrate that inhibition of HIV-1 RNase H may occur by either direct or indirect mechanisms, and they provide a framework for identifying novel agents such as 4-[5-(benzoylamino)thien2-yl]-2,4-dioxobutanoic acid that specifically targets RNase H.
引用
收藏
页码:2777 / 2780
页数:4
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