b-Diketo acid-containing compounds are a promising class of human immunodeficiency virus type 1 (HIV-1) integrase (IN) inhibitors. Starting from the hypothesis that these inhibitors are able to coordinate ions in solution before interacting on the active site, a series of potentiometric measurements have been performed to understand the coordination ability of the diketo acid pharmacophore toward the biologically relevant Mg2+. Moreover, by using b-diketo acid/ester as model ligands with a set of divalent metal ions (Mg, Mn, Ni, Co, Cu, and Zn), we obtained a series of complexes and tested them for anti-HIV-1 IN activity. Results demonstrate that the diketo acid functionality chelates divalent metal ions in solution, and complexes wi...
Metal-activated enzymes are important targets in drug discovery in general and for antivirals in par...
AbstractHIV-1 integrase (IN) has become an attractive target since drug resistance against HIV-1 rev...
A new target in AIDS therapy development is HIV-1 integrase (IN). It was proven that HIV-1 IN requir...
Previously, we synthesized a series of -diketo acid metal complexes as novel HIV-1 integrase (IN) in...
In a previous work we reported results about the coordination ability of the diketo acid pharmacoph...
Most active and selective strand transfer HIV-1 integrase (IN) inhibitors contain chelating function...
Most active and selective strand transfer HIV-1 integrase (IN) inhibitors contain chelating function...
HIV-1 Integrase (IN) represents a very attractive pharmacological target for the development of new ...
Data regarding the activity of metal complexes against HIV virus in cell are surprisingly scarce. In...
HIV-1 integrase (IN) has been validated as an attractive target for the treatment of HIV/AIDS. Sever...
The mechanism of integrase is generally accepted to be dependant on the presence of two divalent met...
Human immunodeficiency virus type 1 (HIV-1) infection, still represent a serious global health emerg...
AbstractHIV-1 integrase (IN) is a potential target for developing drugs against AIDS. In this letter...
HIV-1 integrase (IN) and Ribonuclease H (RNase) H belong to a polynucleotidyl trasferases class and ...
Drawing inspiration from the structural features of some natural polyphenols, the synthesis of two d...
Metal-activated enzymes are important targets in drug discovery in general and for antivirals in par...
AbstractHIV-1 integrase (IN) has become an attractive target since drug resistance against HIV-1 rev...
A new target in AIDS therapy development is HIV-1 integrase (IN). It was proven that HIV-1 IN requir...
Previously, we synthesized a series of -diketo acid metal complexes as novel HIV-1 integrase (IN) in...
In a previous work we reported results about the coordination ability of the diketo acid pharmacoph...
Most active and selective strand transfer HIV-1 integrase (IN) inhibitors contain chelating function...
Most active and selective strand transfer HIV-1 integrase (IN) inhibitors contain chelating function...
HIV-1 Integrase (IN) represents a very attractive pharmacological target for the development of new ...
Data regarding the activity of metal complexes against HIV virus in cell are surprisingly scarce. In...
HIV-1 integrase (IN) has been validated as an attractive target for the treatment of HIV/AIDS. Sever...
The mechanism of integrase is generally accepted to be dependant on the presence of two divalent met...
Human immunodeficiency virus type 1 (HIV-1) infection, still represent a serious global health emerg...
AbstractHIV-1 integrase (IN) is a potential target for developing drugs against AIDS. In this letter...
HIV-1 integrase (IN) and Ribonuclease H (RNase) H belong to a polynucleotidyl trasferases class and ...
Drawing inspiration from the structural features of some natural polyphenols, the synthesis of two d...
Metal-activated enzymes are important targets in drug discovery in general and for antivirals in par...
AbstractHIV-1 integrase (IN) has become an attractive target since drug resistance against HIV-1 rev...
A new target in AIDS therapy development is HIV-1 integrase (IN). It was proven that HIV-1 IN requir...