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HIV-1逆转录酶变体:运用蒙特卡罗模拟结合线性响应方法对Y181C、V106A、L100I和K103N突变与非核苷抑制剂进行分子建模

HIV-1 reverse transcriptase variants: molecular modeling of Y181C, V106A, L100I, and K103N mutations with nonnucleoside inhibitors using Monte Carlo simulations in combination with a linear response method.

作者信息

Smith Marilyn B Kroeger, Ruby Sandra, Horouzhenko Stanislav, Buckingham Bryan, Richardson Julia, Puleri Ina, Potts Emily, Jorgensen William L, Arnold Edward, Zhang Wanyi, Hughes Stephen H, Michejda Christopher J, Smith Richard H

机构信息

NCI-Frederick, Frederick, MD 21702, USA.

出版信息

Drug Des Discov. 2003;18(4):151-63. doi: 10.3109/10559610390484203.

Abstract

The energies and physical descriptors for the binding of 21 novel 1-(2,6-difluorobenzyl)-2-(2,6-difluorophenyl)-benzimidazole (BPBI) analogs to HIV-1 reverse transcriptase (RT) variants Y181C, L100I, V106A, and K103N have been determined using Monte Carlo (MC) simulations. The crystallographic structure of the lead compound, 4-methyl BPBI, was used as a starting point to model the inhibitors in both the mutant bound and the unbound states. The energy terms and physical descriptors obtained from the calculations were reasonably correlated with the respective experimental EC50 values for the inhibitors against the various mutant RTs. Using the linear response correlations from the calculations, 2 novel BPBI inhibitors have been designed and simulations have been carried out. The results show the computed deltaG(binding) values match the experimental data for the analogs. Given the ongoing problem with drug resistance, the ability to predict the activity of novel analogs against variants prior to synthesis is highly advantageous.

摘要

已使用蒙特卡罗(MC)模拟确定了21种新型1-(2,6-二氟苄基)-2-(2,6-二氟苯基)-苯并咪唑(BPBI)类似物与HIV-1逆转录酶(RT)变体Y181C、L100I、V106A和K103N结合的能量和物理描述符。先导化合物4-甲基BPBI的晶体结构被用作在突变体结合态和未结合态中对抑制剂进行建模的起点。从计算中获得的能量项和物理描述符与抑制剂针对各种突变RT的相应实验EC50值具有合理的相关性。利用计算中的线性响应相关性,设计了2种新型BPBI抑制剂并进行了模拟。结果表明,计算得到的ΔG(结合)值与类似物的实验数据相匹配。鉴于持续存在的耐药性问题,在合成之前预测新型类似物对变体的活性的能力具有很大优势。

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