HIV-2 protease is inactivated after oxidation at the dimer interface and activity can be partly restored with methionine sulphoxide reductase

被引:56
作者
Davis, DA
Newcomb, FM
Moskovitz, J
Wingfield, PT
Stahl, SJ
Kaufman, J
Fales, HM
Levine, RL
Yarchoan, R
机构
[1] NCI, HIV & AIDS Malignancy Branch, NIH, Bethesda, MD 20892 USA
[2] NHLBI, Biochem Lab, NIH, Bethesda, MD 20892 USA
[3] NIAMSD, Prot Express Lab, NIH, Bethesda, MD 20892 USA
[4] NHLBI, Biophys Chem Lab, NIH, Bethesda, MD 20892 USA
关键词
polyprotein processing; redox regulation; retroviruses; thioredoxin; viral maturation;
D O I
10.1042/0264-6021:3460305
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 viruses encode a homodimeric protease that is essential for the production of infectious virus. Previous studies have shown that HIV-1 protease is susceptible to oxidative inactivation at the dimer interface at Cys-95, a process that can be reversed both chemically and enzymically, Here we demonstrate a related yet distinct mechanism of reversible inactivation of the HIV-2 protease. Exposure of the HIV-2 protease to H2O2 resulted in conversion of the two methionine residues (Met-76 and Met-95) to methionine sulphoxide as determined by amino acid analysis and mass spectrometry. This oxidation completely inactivated protease activity. However, the activity could be restored (up to 40%) after exposure of the oxidized protease to methionine sulphoxide reductase, This treatment resulted in the reduction of methionine sulphoxide 95 but not methionine sulphoxide 76 to methionine, as determined by peptide mapping/mass spectrometry. We also found that exposure of immature HIV-2 particles to H2O2 led to the inhibition of polyprotein processing in maturing virus particles comparable to that demonstrated for HIV-1 particles. Thus oxidative inactivation of the HIV protease in vitro and in maturing viral particles is not restricted to the type 1 proteases, These studies indicate that two distinct retroviral proteases are susceptible to inactivation after a very minor modification at residue 95 of the dimer interface and suggest that the dimer interface might be a viable target for the development of novel protease inhibitors.
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页码:305 / 311
页数:7
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