Due to the biological liability of diketo acid (DKA) chain, we transferred this element of our previously reported anti-HIV-1 pyrrolyl derivatives to a non-DKA scaffold, obtaining a series of pyrrolyl-pyrazole carboxylic acids as new RNase H inhibitors. Among the newly synthesized derivatives, oxyphenylpyrrolyl-pyrazoles demonstrated inhibitory activities within the low micromolar/submicromolar range with compound 11b being the most potent. Interestingly, all tested compounds showed up to 2 orders of magnitude of selectivity for RNase H vs integrase. Docking studies within the RNase H catalytic site, coupled with site-directed mutagenesis, showed the key structural features that could confer the ability to establish specific interactions wi...
Novel anti-HIV agents are still needed to overcome resistance issues, in particular inhibitors actin...
The HIV-1 integrase (IN) and reverse transcriptase (RT) are essential enzymes in the virus cycle. RT...
HIV-1 reverse transcriptase (RT)-associated RNase H activity is an essential function in viral genom...
Due to the biological liability of diketo acid (DKA) chain, we transferred this element of our previ...
The development of HIV-1 dual inhibitors is a highly innovative approach aimed at reducing drug toxi...
The increasing efficiency of HAART has helped to transform HIV/AIDS into a chronic disease. Still, r...
The development of HIV-1 dual inhibitors is a highly innovative approach aimed at reducing drug toxi...
The selection of drug resistance viral strains is a still open issue requiring constant efforts to i...
HIV-1 integrase (IN) and Ribonuclease H (RNase) H belong to a polynucleotidyl trasferases class and ...
International audienceThe increasing efficiency of HAART has helped to transform HIV/AIDS into a chr...
The increasing efficiency of HAART has helped to transform HIV/AIDS into a chronic disease. Still, r...
In the continuous effort to identify new HIV-1 inhibitors endowed with innovative mechanisms, the du...
The HIV-1 integrase (IN) and reverse transcriptase (RT) are essential enzymes in the virus cycle. RT...
Novel anti-HIV agents are still needed to overcome resistance issues, in particular inhibitors actin...
The HIV-1 integrase (IN) and reverse transcriptase (RT) are essential enzymes in the virus cycle. RT...
HIV-1 reverse transcriptase (RT)-associated RNase H activity is an essential function in viral genom...
Due to the biological liability of diketo acid (DKA) chain, we transferred this element of our previ...
The development of HIV-1 dual inhibitors is a highly innovative approach aimed at reducing drug toxi...
The increasing efficiency of HAART has helped to transform HIV/AIDS into a chronic disease. Still, r...
The development of HIV-1 dual inhibitors is a highly innovative approach aimed at reducing drug toxi...
The selection of drug resistance viral strains is a still open issue requiring constant efforts to i...
HIV-1 integrase (IN) and Ribonuclease H (RNase) H belong to a polynucleotidyl trasferases class and ...
International audienceThe increasing efficiency of HAART has helped to transform HIV/AIDS into a chr...
The increasing efficiency of HAART has helped to transform HIV/AIDS into a chronic disease. Still, r...
In the continuous effort to identify new HIV-1 inhibitors endowed with innovative mechanisms, the du...
The HIV-1 integrase (IN) and reverse transcriptase (RT) are essential enzymes in the virus cycle. RT...
Novel anti-HIV agents are still needed to overcome resistance issues, in particular inhibitors actin...
The HIV-1 integrase (IN) and reverse transcriptase (RT) are essential enzymes in the virus cycle. RT...
HIV-1 reverse transcriptase (RT)-associated RNase H activity is an essential function in viral genom...