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Computational drug design strategies applied to the modelling of humanimmunodeficiency virus-1 reverse transcriptase inhibitors

机译:计算药物设计策略应用于人体建模免疫缺陷病毒1逆转录酶抑制剂

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摘要

Reverse transcriptase (RT) is a multifunctional enzyme in the human immunodeficiency virus (HIV)-1 life cycle and represents a primary target for drug discovery efforts against HIV-1 infection. Two classes of RT inhibitors, the nucleoside RT inhibitors (NRTIs) and the nonnucleoside transcriptase inhibitors are prominently used in the highly active antiretroviral therapy in combination with other anti-HIV drugs. However, the rapid emergence of drug-resistant viral strains has limited the successful rate of the anti-HIV agents. Computational methods are a significant part of the drug design process and indispensable to study drug resistance. In this review, recent advances in computer-aided drug design for the rational design of new compounds against HIV-1 RT using methods such as molecular docking, molecular dynamics, free energy calculations, quantitative structure-activity relationships, pharmacophore modelling and absorption, distribution, metabolism, excretion and toxicity prediction are discussed. Successful applications of these methodologies are also highlighted.
机译:逆转录酶(RT)是人类免疫缺陷病毒(HIV)-1生命周期中的一种多功能酶,它代表针对HIV-1感染的药物开发工作的主要目标。两类RT抑制剂,核苷类RT抑制剂(NRTIs)和非核苷类转录酶抑制剂与其他抗HIV药物联合用于高活性抗逆转录病毒治疗。但是,耐药病毒株的迅速出现限制了抗HIV药物的成功率。计算方法是药物设计过程中的重要组成部分,是研究耐药性必不可少的部分。在这篇综述中,利用分子对接,分子动力学,自由能计算,定量构效关系,药效基团建模和吸收,分布等方法合理设计抗HIV-1 RT新化合物的计算机辅助药物设计的最新进展。 ,代谢,排泄和毒性预测进行了讨论。这些方法的成功应用也得到了强调。

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