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1.
Proc Natl Acad Sci U S A ; 112(28): 8596-601, 2015 Jul 14.
Artigo em Inglês | MEDLINE | ID: mdl-26124101

RESUMO

Nucleoside analog reverse transcriptase inhibitors (NRTIs) are the essential components of highly active antiretroviral (HAART) therapy targeting HIV reverse transcriptase (RT). NRTI triphosphates (NRTI-TP), the biologically active forms, act as chain terminators of viral DNA synthesis. Unfortunately, NRTIs also inhibit human mitochondrial DNA polymerase (Pol γ), causing unwanted mitochondrial toxicity. Understanding the structural and mechanistic differences between Pol γ and RT in response to NRTIs will provide invaluable insight to aid in designing more effective drugs with lower toxicity. The NRTIs emtricitabine [(-)-2,3'-dideoxy-5-fluoro-3'-thiacytidine, (-)-FTC] and lamivudine, [(-)-2,3'-dideoxy-3'-thiacytidine, (-)-3TC] are both potent RT inhibitors, but Pol γ discriminates against (-)-FTC-TP by two orders of magnitude better than (-)-3TC-TP. Furthermore, although (-)-FTC-TP is only slightly more potent against HIV RT than its enantiomer (+)-FTC-TP, it is discriminated by human Pol γ four orders of magnitude more efficiently than (+)-FTC-TP. As a result, (-)-FTC is a much less toxic NRTI. Here, we present the structural and kinetic basis for this striking difference by identifying the discriminator residues of drug selectivity in both viral and human enzymes responsible for substrate selection and inhibitor specificity. For the first time, to our knowledge, this work illuminates the mechanism of (-)-FTC-TP differential selectivity and provides a structural scaffold for development of novel NRTIs with lower toxicity.


Assuntos
DNA Polimerase Dirigida por DNA/metabolismo , Mitocôndrias/efeitos dos fármacos , Cristalografia por Raios X , DNA Polimerase gama , DNA Polimerase Dirigida por DNA/química , Humanos , Cinética , Mitocôndrias/enzimologia , Sondas Moleculares , Inibidores da Síntese de Ácido Nucleico/farmacologia , Conformação Proteica , Inibidores da Transcriptase Reversa/farmacologia , Especificidade por Substrato
2.
Artigo em Inglês | MEDLINE | ID: mdl-28559253

RESUMO

Nucleoside analog inhibitors (NAIs) are an important class of antiviral agents. Although highly effective, some NAIs with activity against hepatitis C virus (HCV) can cause toxicity, presumably due to off-target inhibition of host mitochondrial RNA polymerase (POLRMT). The in vitro nucleotide substrate specificity of POLRMT was studied in order to explore structure-activity relationships that can facilitate the identification of nontoxic NAIs. These findings have important implications for the development of all anti-RNA virus NAIs.


Assuntos
Antivirais/farmacologia , RNA Polimerases Dirigidas por DNA/genética , RNA Polimerases Dirigidas por DNA/metabolismo , Hepacivirus/efeitos dos fármacos , Hepatite C/tratamento farmacológico , Mitocôndrias/efeitos dos fármacos , Amidas/efeitos adversos , Amidas/farmacologia , Antivirais/efeitos adversos , Domínio Catalítico/efeitos dos fármacos , Humanos , Mitocôndrias/genética , Nucleosídeos/farmacologia , Ácidos Fosfóricos/efeitos adversos , Ácidos Fosfóricos/farmacologia , Sofosbuvir/efeitos adversos , Sofosbuvir/farmacologia , Relação Estrutura-Atividade , Especificidade por Substrato
3.
Antimicrob Agents Chemother ; 60(8): 4659-69, 2016 08.
Artigo em Inglês | MEDLINE | ID: mdl-27216050

RESUMO

Ribonucleoside analog inhibitors (rNAI) target the hepatitis C virus (HCV) RNA-dependent RNA polymerase nonstructural protein 5B (NS5B) and cause RNA chain termination. Here, we expand our studies on ß-d-2'-C-methyl-2,6-diaminopurine-ribonucleotide (DAPN) phosphoramidate prodrug 1 (PD1) as a novel investigational inhibitor of HCV. DAPN-PD1 is metabolized intracellularly into two distinct bioactive nucleoside triphosphate (TP) analogs. The first metabolite, 2'-C-methyl-GTP, is a well-characterized inhibitor of NS5B polymerase, whereas the second metabolite, 2'-C-methyl-DAPN-TP, behaves as an adenosine base analog. In vitro assays suggest that both metabolites are inhibitors of NS5B-mediated RNA polymerization. Additional factors, such as rNAI-TP incorporation efficiencies, intracellular rNAI-TP levels, and competition with natural ribonucleotides, were examined in order to further characterize the potential role of each nucleotide metabolite in vivo Finally, we found that although both 2'-C-methyl-GTP and 2'-C-methyl-DAPN-TP were weak substrates for human mitochondrial RNA (mtRNA) polymerase (POLRMT) in vitro, DAPN-PD1 did not cause off-target inhibition of mtRNA transcription in Huh-7 cells. In contrast, administration of BMS-986094, which also generates 2'-C-methyl-GTP and previously has been associated with toxicity in humans, caused detectable inhibition of mtRNA transcription. Metabolism of BMS-986094 in Huh-7 cells leads to 87-fold higher levels of intracellular 2'-C-methyl-GTP than DAPN-PD1. Collectively, our data characterize DAPN-PD1 as a novel and potent antiviral agent that combines the delivery of two active metabolites.


Assuntos
Adenosina/análogos & derivados , Antivirais/farmacologia , Guanosina Monofosfato/análogos & derivados , Hepacivirus/efeitos dos fármacos , Hepatite C/tratamento farmacológico , Pró-Fármacos/farmacologia , Sofosbuvir/farmacologia , Adenosina/farmacologia , Linhagem Celular , RNA Polimerases Dirigidas por DNA/metabolismo , Guanosina Monofosfato/farmacologia , Humanos , RNA/metabolismo , RNA Mitocondrial , RNA Viral/metabolismo , Ribonucleosídeos/metabolismo , Transcrição Gênica/efeitos dos fármacos , Proteínas não Estruturais Virais/metabolismo , Replicação Viral/efeitos dos fármacos
4.
Chemistry ; 17(15): 4157-65, 2011 Apr 04.
Artigo em Inglês | MEDLINE | ID: mdl-21387422

RESUMO

The dehydrotropylium-Co(2)(CO)(6) ion was generated by the action of HBF(4) or BF(3)⋅OEt(2) on the corresponding cycloheptadienynol complex, which in turn has been prepared in four steps from a known diacetoxycycloheptenyne complex. The reaction of the cycloheptadienynol complex via the dehydrotropylium-Co(2)(CO)(6) ion with several nucleophiles results in substitution reactions with reactive nucleophiles (N>1) under normal conditions, and a radical dimerisation reaction in the presence of less reactive nucleophiles. Competitive reactions of the cycloheptadienynol complex with an acyclic trienynol complex show no preference for generation of the dehydrotropylium-Co(2)(CO)(6) ion over an acyclic cation. DFT studies on the dehydrotropylium-Co(2)(CO)(6) ion, specifically evaluation of its harmonic oscillator model of aromaticity (HOMA) value (+0.95), its homodesmotic-reaction-based stabilisation energy (≈2.8 kcal mol(-1)) and its NICS(1) value (-2.9), taken together with the experimental studies suggest that the dehydrotropylium-Co(2)(CO)(6) ion is weakly aromatic.

5.
Nucleosides Nucleotides Nucleic Acids ; 39(1-3): 204-224, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-31595843

RESUMO

ß-D-2'-C-Methyl-2,6-diaminopurine ribonucleoside (2'-C-Me-DAPN) phosphoramidate prodrug (DAPN-PD) is a selective hepatitis C virus inhibitor that is metabolized intracellularly into two active metabolites: 2'-C-Methyl-DAPN triphosphate (2'-C-Me-DAPN-TP) and 2'-C-methyl-guanosine 5'-triphosphate (2'-C-Me-GTP). BMS-986094 and IDX-184 are also bioconverted to 2'-C-Me-GTP. A phase IIb clinical trial with BMS-986094 was abruptly halted due to adverse cardiac and renal effects. Herein, we developed an efficient large scale synthesis of DAPN-PD and determined intracellular pharmacology of DAPN-PD in comparison with BMS-986094 and IDX-184, versus Huh-7, HepG2 and interspecies primary hepatocytes and human cardiomyocytes. Imaging data of drug treated human cardiomyocytes was found to be most useful in determining toxicity potential as no obvious beating rate change was observed for IDX-184 up to 50 µM up at 48 h. However, with BMS-986094 and DAPN-PD at 10 µM changes to both beat rate and rhythm were noted.


Assuntos
Amidas/farmacologia , Antivirais/farmacologia , Hepacivirus/efeitos dos fármacos , Hepacivirus/fisiologia , Hepatite C/metabolismo , Hepatite C/virologia , Ácidos Fosfóricos/farmacologia , Pró-Fármacos/farmacologia , Replicação Viral/efeitos dos fármacos , Amidas/efeitos adversos , Amidas/química , Animais , Antivirais/efeitos adversos , Cardiotoxicidade/etiologia , Linhagem Celular Tumoral , Metabolismo Energético , Hepatite C/complicações , Hepatite C/tratamento farmacológico , Hepatócitos/efeitos dos fármacos , Hepatócitos/metabolismo , Humanos , Redes e Vias Metabólicas , Metaboloma , Metabolômica/métodos , Miócitos Cardíacos/efeitos dos fármacos , Miócitos Cardíacos/metabolismo , Ácidos Fosfóricos/efeitos adversos , Ácidos Fosfóricos/química , Pró-Fármacos/efeitos adversos
6.
Chem Commun (Camb) ; (40): 4971-3, 2008 Oct 28.
Artigo em Inglês | MEDLINE | ID: mdl-18931756

RESUMO

Dehydrotropylium-Co(2)(CO)(6) ion (2) has been generated by the Lewis acid mediated ionization of alcohol (3); it is attacked by relatively strong nucleophiles (N>1), but undergoes a radical homocoupling in the presence of weak nucleophiles (N<1).

7.
PLoS One ; 12(1): e0169052, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28046007

RESUMO

SAMHD1 hydrolyzes 2'-deoxynucleoside-5'-triphosphates (dNTPs) into 2'-deoxynucleosides and inorganic triphosphate products. In this paper, we evaluated the impact of 2' sugar moiety substitution for different nucleotides on being substrates for SAMHD1 and mechanisms of actions for the results. We found that dNTPs ((2'R)-2'-H) are only permissive in the catalytic site of SAMHD1 due to L150 exclusion of (2'R)-2'-F and (2'R)-2'-OH nucleotides. However, arabinose ((2'S)-2'-OH) nucleoside-5'-triphosphates analogs are permissive to bind in the catalytic site and be hydrolyzed by SAMHD1. Moreover, when the (2'S)-2' sugar moiety is increased to a (2'S)-2'-methyl as with the SMDU-TP analog, we detect inhibition of SAMHD1's dNTPase activity. Our computational modeling suggests that (2'S)-2'-methyl sugar moiety clashing with the Y374 of SAMHD1. We speculate that SMDU-TP mechanism of action requires that the analog first docks in the catalytic pocket of SAMHD1 but prevents the A351-V378 helix conformational change from being completed, which is needed before hydrolysis can occur. Collectively we have identified stereoselective 2' substitutions that reveal nucleotide substrate specificity for SAMHD1, and a novel inhibitory mechanism for the dNTPase activity of SAMHD1. Importantly, our data is beneficial for understanding if FDA-approved antiviral and anticancer nucleosides are hydrolyzed by SAMHD1 in vivo.


Assuntos
Inibidores Enzimáticos/farmacologia , Proteínas Monoméricas de Ligação ao GTP/antagonistas & inibidores , Proteínas Monoméricas de Ligação ao GTP/metabolismo , Animais , Arabinofuranosilcitosina Trifosfato , Carboidratos/química , Galinhas , Humanos , Hidrólise , Macrófagos/efeitos dos fármacos , Macrófagos/metabolismo , Modelos Moleculares , Monócitos/citologia , Nucleotídeos/metabolismo , Multimerização Proteica/efeitos dos fármacos , Proteína 1 com Domínio SAM e Domínio HD , Especificidade por Substrato/efeitos dos fármacos
8.
J Med Chem ; 60(13): 5424-5437, 2017 07 13.
Artigo em Inglês | MEDLINE | ID: mdl-28595015

RESUMO

Pan-genotypic nucleoside HCV inhibitors display a high genetic barrier to drug resistance and are the preferred direct-acting agents to achieve complete sustained virologic response in humans. Herein, we report, the discovery of a ß-d-2'-Cl,2'-F-uridine phosphoramidate nucleotide 16, as a nontoxic pan-genotypic anti-HCV agent. Phosphoramidate 16 in its 5'-triphosphate form specifically inhibited HCV NS5B polymerase with no marked inhibition of human polymerases and cellular mitochondrial RNA polymerase. Studies on the intracellular half-life of phosphoramidate 16-TP in live cells demonstrated favorable half-life of 11.6 h, suggesting once-a-day dosing. Stability in human blood and favorable metabolism in human intestinal microsomes and liver microsomes make phosphoramidate 16 a prospective candidate for further studies to establish its potential value as a new anti-HCV agent.


Assuntos
Antivirais/farmacologia , Hepacivirus/efeitos dos fármacos , Pró-Fármacos/farmacologia , Ribonucleotídeos/farmacologia , Antivirais/síntese química , Antivirais/química , Células Cultivadas , Relação Dose-Resposta a Droga , Genótipo , Células Hep G2 , Hepacivirus/genética , Humanos , Testes de Sensibilidade Microbiana , Estrutura Molecular , Pró-Fármacos/síntese química , Pró-Fármacos/química , Ribonucleotídeos/síntese química , Ribonucleotídeos/química , Relação Estrutura-Atividade , Proteínas não Estruturais Virais/antagonistas & inibidores , Proteínas não Estruturais Virais/metabolismo , Replicação Viral/efeitos dos fármacos
9.
J Med Chem ; 58(8): 3445-58, 2015 Apr 23.
Artigo em Inglês | MEDLINE | ID: mdl-25849312

RESUMO

The conversion of selected ß-D-2,6-diaminopurine nucleosides (DAPNs) to their phosphoramidate prodrug (PD) substantially blocks the conversion to the G-analog allowing for the generation of two bioactive nucleoside triphosphates (NTPs) in human hepatocytes. A variety of 2'-C-methyl DAPN-PDs were prepared and evaluated for inhibition of HCV viral replication in Huh-7 cells, cytotoxicity in various cell lines, and cellular pharmacology in both Huh-7 and primary human liver cells. The DAPN-PDs were pan-genotypic, effective against various HCV resistant mutants, and resistant variants could not be selected. 2'-C-Me-DAPN-TP and 2'-C-Me-GTP were chain terminators for genotype 1b HCV-pol, and single nucleotide incorporation assays revealed that 2'-C-Me-DAPN-TP was incorporated opposite U. No cytotoxicity was observed with our DAPN-PD when tested up to 50 µM. A novel, DAPN-PD, 15c, has been selected for further evaluation because of its good virologic and toxicologic profile and its ability to deliver two active metabolites, potentially simplifying HCV treatment.


Assuntos
2-Aminopurina/análogos & derivados , Antivirais/química , Antivirais/farmacologia , Guanosina Trifosfato/química , Guanosina Trifosfato/farmacologia , Hepacivirus/efeitos dos fármacos , 2-Aminopurina/química , 2-Aminopurina/metabolismo , 2-Aminopurina/farmacologia , Amidas/química , Amidas/metabolismo , Amidas/farmacologia , Antivirais/metabolismo , Linhagem Celular , Células Cultivadas , Guanosina Trifosfato/metabolismo , Hepacivirus/genética , Hepatite C/tratamento farmacológico , Humanos , Metilação , Ácidos Fosfóricos/química , Ácidos Fosfóricos/metabolismo , Ácidos Fosfóricos/farmacologia , Pró-Fármacos/química , Pró-Fármacos/metabolismo , Pró-Fármacos/farmacologia , Ribonucleosídeos/química , Ribonucleosídeos/metabolismo , Ribonucleosídeos/farmacologia
10.
Antiviral Res ; 102: 119-47, 2014 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-24275341

RESUMO

Chutes and Ladders is an exciting up-and-down-again game in which players race to be the first to the top of the board. Along the way, they will find ladders to help them advance, and chutes that will cause them to move backwards. The development of nucleoside analogs for clinical treatment of hepatitis C presents a similar scenario in which taking shortcuts may help quickly advance a program, but there is always a tremendous risk of being sent backwards as one competes for the finish line. In recent years the treatment options for chronic hepatitis C virus (HCV) infection have expand due to the development of a replicon based in vitro evaluation system, allowing for the identification of multiple drugable viral targets along with a concerted and substantial drug discovery effort. Three major drug targets have reached clinical study for chronic HCV infection: the NS3/4A serine protease, the large phosphoprotein NS5A, and the NS5B RNA-dependent RNA polymerase. Recently, two oral HCV protease inhibitors were approved by the FDA and were the first direct acting anti-HCV agents to result from the substantial research in this area. There are currently many new chemical entities from several different target classes that are being evaluated worldwide in clinical trials for their effectiveness at achieving a sustained virologic response (SVR) (Pham et al., 2004; Radkowski et al., 2005). Clearly the goal is to develop therapies leading to a cure that are safe, widely accessible and available, and effective against all HCV genotypes (GT), and all stages of the disease. Nucleoside analogs that target the HCV NS5B polymerase that have reached human clinical trials is the focus of this review as they have demonstrated significant advantages in the clinic with broader activity against the various HCV GT and a higher barrier to the development of resistant viruses when compared to all other classes of HCV inhibitors.


Assuntos
Antivirais/isolamento & purificação , Antivirais/uso terapêutico , Descoberta de Drogas/tendências , Hepatite C Crônica/tratamento farmacológico , Nucleosídeos/isolamento & purificação , Nucleosídeos/uso terapêutico , Antivirais/química , Ensaios Clínicos como Assunto , Humanos , Nucleosídeos/química , Proteínas não Estruturais Virais/antagonistas & inibidores
11.
Photochem Photobiol Sci ; 7(8): 936-47, 2008 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-18688501

RESUMO

A new chiral perylene monoanhydride monoimide (1) with a sterically hindered chiral amine was successfully synthesized for further selective functionalization at terminal positions. At the same time, the chiral perylene diimide (2) with the same amine has been synthesized. The synthesized products were characterized using the data from NMR, IR, MS, UV-vis, DSC, TGA, elemental analysis and cyclic and square wave voltammetry. Compound 2 shows an excellent solubility of 200 mg mL(-1) in chloroform. The band gap energy (Eg), LUMO and HOMO energy values were 2.28, -3.77 and -6.05 eV for 2, respectively in chloroform. In solid state, the band gap energy (Eg), LUMO and HOMO energy values were 1.96, -4.22 and -6.18 eV for 1 and 1.92, -4.13 and -6.05 eV for 2, respectively. Whereas 1 (solid state: -0.58 and -0.69 V vs. ferrocene/ferrocenium couple) and 2 (in chloroform: -1.03 and -1.22 V vs. ferrocene/ferrocenium couple) show two reversible reduction steps, 2 exhibits only one reversible wave (solid state: -0.67 V vs. ferrocene/ferrocenium couple). The diffusion coefficients were determined as 1.91 x 10(-7) and 8.47 x 10(-7) cm2 s(-1) for 1 and 2 in solid state, respectively, and 1.27 x 10(-5) cm2 s(-1) for 2 in solution. The solid state emission ability of the chiral products ( is much more emissive than ) remains a challenge for photonic, electronic and sensor applications. 1 and 2 showed high thermal stability. Efficient prevention of intermolecular pi-pi contacts of fluorophores results in an excellent fluorescence emission in solid state and solubility for 2.

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