Probing of HIV-1 integrase/DNA interactions using novel analogs of viral DNA.

Archive ouverte

Agapkina, Julia | Smolov, Maksim | Barbe, Sophie | Zubin, Evgenii | Zatsepin, Timofei | Deprez, Eric | Le Bret, Marc | Mouscadet, Jean-François | Gottikh, Marina

Edité par CCSD ; American Society for Biochemistry and Molecular Biology -

The specific activity of the human immunodeficiency virus, type 1 (HIV-1), integrase on the viral long terminal repeat requires the binding of the enzyme to certain sequences located in the U3 and U5 regions at the ends of viral DNA, but the determinants of this specific DNA-protein recognition are not yet completely understood. We synthesized DNA duplexes mimicking the U5 region and containing either 2'-modified nucleosides or 1,3-propanediol insertions and studied their interactions with HIV-1 integrase, using Mn2+ or Mg2+ ions as integrase cofactors. These DNA modifications had no strong effect on integrase binding to the substrate analogs but significantly affected 3'-end processing rate. The effects of nucleoside modifications at positions 5, 6, and especially 3 strongly depended on the cationic cofactor used. These effects were much more pronounced in the presence of Mg2+ than in the presence of Mn2+. Modifications of base pairs 7-9 affected 3'-end processing equally in the presence of both ions. Adenine from the 3rd bp is thought to form at least two hydrogen bonds with integrase that are crucial for specific DNA recognition. The complementary base, thymine, is not important for integrase activity. For other positions, our results suggest that integrase recognizes a fine structure of the sugar-phosphate backbone rather than heterocyclic bases. Integrase interactions with the unprocessed strand at positions 5-8 are more important than interactions with the processed strand for specific substrate recognition. Based on our results, we suggest a model for integrase interaction with the U5 substrate.

Suggestions

Du même auteur

Relationship between the oligomeric status of HIV-1 integrase on DNA and enzymatic activity.

Archive ouverte | Guiot, Elvire | CCSD

The 3'-processing of the extremities of viral DNA is the first of two reactions catalyzed by HIV-1 integrase (IN). High order IN multimers (tetramers) are required for complete integration, but it remains unclear which oligomer is...

Kinetic study of the HIV-1 DNA 3'-end processing.

Archive ouverte | Smolov, Maksim | CCSD

The 3'-processing of viral DNA extremities is the first step in the integration process catalysed by human immunodeficiency virus (HIV)-1 integrase (IN). This reaction is relatively inefficient and processed DNAs are usually detec...

Mechanism of HIV-1 integrase inhibition by styrylquinoline derivatives in vitro.

Archive ouverte | Deprez, Eric | CCSD

Styrylquinoline derivatives (SQ) efficiently inhibit the 3'-processing activity of integrase (IN) with IC50 values of between 0.5 and 5 microM. We studied the mechanism of action of these compounds in vitro. First, we used steady-...

Chargement des enrichissements...