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1.
Bioorg Med Chem ; 26(8): 1713-1726, 2018 05 01.
Artigo em Inglês | MEDLINE | ID: mdl-29478802

RESUMO

Reverse transcriptase (RT) is responsible for replicating the HIV-1 genome and is a validated therapeutic target for the treatment of HIV infections. During each cycle of the RT-catalyzed DNA polymerization process, inorganic pyrophosphate is released as the by-product of nucleotide incorporation. Small molecules were identified that act as bioisosteres of pyrophosphate and can selectively freeze the catalytic cycle of HIV-1 RT at the pre-translocated stage of the DNA- or RNA-template-primer-enzyme complex.


Assuntos
Difosfatos/farmacologia , Transcriptase Reversa do HIV/antagonistas & inibidores , Inibidores da Transcriptase Reversa/farmacologia , Bibliotecas de Moléculas Pequenas/farmacologia , Biocatálise , DNA Viral/efeitos dos fármacos , DNA Viral/genética , Difosfatos/síntese química , Difosfatos/química , Relação Dose-Resposta a Droga , Transcriptase Reversa do HIV/genética , Transcriptase Reversa do HIV/metabolismo , Estrutura Molecular , Polimerização/efeitos dos fármacos , Inibidores da Transcriptase Reversa/síntese química , Inibidores da Transcriptase Reversa/química , Bibliotecas de Moléculas Pequenas/síntese química , Bibliotecas de Moléculas Pequenas/química , Relação Estrutura-Atividade
2.
Biochem Pharmacol ; 136: 51-61, 2017 07 15.
Artigo em Inglês | MEDLINE | ID: mdl-28390939

RESUMO

α-Carboxy nucleoside phosphonates (α-CNPs) are modified nucleotides that represent a novel class of nucleotide-competing reverse transcriptase (RT) inhibitors (NcRTIs). They were designed to act directly against HIV-1 RT without the need for prior activation (phosphorylation). In this respect, they differ from the nucleoside or nucleotide RTIs [N(t)RTIs] that require conversion to their triphosphate forms before being inhibitory to HIV-1 RT. The guanine derivative (G-α-CNP) has now been synthesized and investigated for the first time. The (L)-(+)-enantiomer of G-α-CNP directly and competitively inhibits HIV-1 RT by interacting with the substrate active site of the enzyme. The (D)-(-)-enantiomer proved inactive against HIV-1 RT. In contrast, the (+)- and (-)-enantiomers of G-α-CNP inhibited herpes (i.e. HSV-1, HCMV) DNA polymerases in a non- or uncompetitive manner, strongly indicating interaction of the (L)-(+)- and the (D)-(-)-G-α-CNPs at a location different from the polymerase substrate active site of the herpes enzymes. Such entirely different inhibition profile of viral polymerases is unprecedented for a single antiviral drug molecule. Moreover, within the class of α-CNPs, subtle differences in their sensitivity to mutant HIV-1 RT enzymes were observed depending on the nature of the nucleobase in the α-CNP molecules. The unique properties of the α-CNPs make this class of compounds, including G-α-CNP, direct acting inhibitors of multiple viral DNA polymerases.


Assuntos
Fármacos Anti-HIV/farmacocinética , Antivirais/farmacocinética , DNA Polimerase Dirigida por DNA/metabolismo , HIV-1/enzimologia , Herpesvirus Humano 1/enzimologia , Fármacos Anti-HIV/química , Antivirais/química , DNA Polimerase Dirigida por DNA/química , Guanina/química , Guanina/farmacocinética , HIV-1/química , HIV-1/efeitos dos fármacos , Herpesvirus Humano 1/química , Herpesvirus Humano 1/efeitos dos fármacos , Humanos , Cinética , Nucleosídeos/química , Nucleosídeos/farmacocinética , Organofosfonatos/química , Organofosfonatos/farmacocinética , Estrutura Secundária de Proteína
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