Synthesis and substrate properties towards HIV-1 reverse transcriptase of new diphosphate analogues of 9-[(2-phosphonomethoxy)ethyl]adenine.

Q2 Pharmacology, Toxicology and Pharmaceutics Antiviral Chemistry and Chemotherapy Pub Date : 2018-01-01 DOI:10.1177/2040206618757636
Wolfgang Hg Laux, Stéphane Priet, Karine Alvarez, Suzanne Peyrottes, Christian Périgaud
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引用次数: 1

Abstract

Background The replacement of β,γ-pyrophosphate by β,γ-phosphonate moieties within the triphosphate chain of 5'-triphosphate nucleoside analogues was previously studied for various antiviral nucleoside analogues such as AZT and 2',3'-dideoxynucleosides. Thus, it has been shown that these chemical modifications could preserve, in some cases, the terminating substrate properties of the triphosphate analogue for HIV-RT. Herein, we aimed to study such 5'-triphosphate mimics based on the scaffold of the well-known antiviral agent 9-[(2-phosphonomethoxy)ethyl]adenine (PMEA, Adefovir). Methods Synthesis involved coupling of a morpholidate derivative of PMEA with appropriate pyrophosphoryl analogues. The relative efficiencies of incorporation of the studied diphosphate phosphonates were measured using subtype B WT HIV-1 RT in an in vitro susceptibility assay, in comparison to the parent nucleotide analogue (PMEApp). Results Searching for nucleoside 5'-triphosphate mimics, we have synthesized and studied a series of diphosphate analogues of PMEA bearing non hydrolysable bonds between the and phosphorus atoms. We also examined their relative inhibitory capacity towards HIV-1 reverse transcriptase in comparison to the parent nucleotide analogue (PMEApp). Only one of them appeared as a weak inhibitor (IC50 = 403.0 ± 75.5 µM) and proved to be less effective than PMEApp (IC50 = 6.4 ± 0.8 µM). Conclusion PMEA diphosphoryl derivatives were designed as potential substrates and/or inhibitors of various viral polymerases. These modifications dramatically affect their ability to inhibit HIV-RT.

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新的9-[(2-磷酸甲氧基)乙基]腺嘌呤二磷酸类似物的合成及其对HIV-1逆转录酶的底物性质。
研究背景:在5'-三磷酸核苷类似物的三磷酸链中,β,γ-膦酸酯部分取代β,γ-焦磷酸,用于各种抗病毒核苷类似物,如AZT和2',3'-二脱氧核苷。因此,研究表明,在某些情况下,这些化学修饰可以保留HIV-RT三磷酸类似物的终止底物特性。在此,我们的目的是研究这种基于著名抗病毒药物9-[(2-磷酸甲氧基)乙基]腺嘌呤(PMEA, Adefovir)支架的5'-三磷酸模拟物。方法将PMEA的酯类衍生物与合适的焦磷酰类似物偶联合成。与母体核苷酸类似物(PMEApp)相比,使用B亚型WT HIV-1 RT在体外敏感性试验中测量了所研究的二磷酸膦酸盐掺入的相对效率。结果为了寻找核苷5′-三磷酸模拟物,我们合成并研究了一系列PMEA的二磷酸类似物,它们与磷原子之间具有不可水解的键。与母体核苷酸类似物(PMEApp)相比,我们还检测了它们对HIV-1逆转录酶的相对抑制能力。其中仅有1种表现为弱抑制剂(IC50 = 403.0±75.5µM),且效果低于PMEApp (IC50 = 6.4±0.8µM)。结论PMEA二磷基衍生物可作为多种病毒聚合酶的潜在底物和/或抑制剂。这些修饰极大地影响了它们抑制HIV-RT的能力。
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来源期刊
Antiviral Chemistry and Chemotherapy
Antiviral Chemistry and Chemotherapy Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
5.20
自引率
0.00%
发文量
5
审稿时长
15 weeks
期刊介绍: Antiviral Chemistry & Chemotherapy publishes the results of original research concerned with the biochemistry, mode of action, chemistry, pharmacology and virology of antiviral compounds. Manuscripts dealing with molecular biology, animal models and vaccines are welcome. The journal also publishes reviews, pointers, short communications and correspondence.
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