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基于对接-MM-PB/GS的HIV-1逆转录酶抑制剂结合的相对自由能及结合模式计算

Relative free energy of binding and binding mode calculations of HIV-1 RT inhibitors based on dock-MM-PB/GS.

作者信息

Zhou Zhigang, Madura Jeffry D

机构信息

Department of Chemistry and Biochemistry, Duquesne University, Pittsburgh, Pennsylvania 15282, USA.

出版信息

Proteins. 2004 Nov 15;57(3):493-503. doi: 10.1002/prot.20223.

Abstract

Tetrahydroimidazo-[4,5,l-jk][1,4]-benzodiazepin-2-(1H)-one (TIBO) derivatives are important nonnucleoside human immunodeficiency virus-1 reverse transcriptase inhibitors (NNRTI). Several TIBO derivatives have shown high potency to inhibit reverse transcriptase (RT) and one (Tivirapine) has entered into clinical trials. The free energy of binding (FEB) is a numerical way to express the binding affinity of a ligand to its receptor and has been applied in screening candidates in rational drug design. In this work, the FEB of 42 TIBOs in RT was studied. Relative FEB is expressed in the form of a linear combination of vdW, electrostatic, solvation, and nonpolar solvation energy terms. The predicted FEB activity of the TIBOs studied has a good correlation (r(2) = 0.8680, q(2) = 0.8298) with respect to the experimental activity (pIC(50)). Based on the data reported here, the Finite Difference Poisson Boltzmann with a Gaussian Smooth Dielectric Constant Function method (PB/GS) solvation energy term is very important in predicting the binding affinity of TIBOs in RT. In summary, the Dock-Molecular Mechanics (MM)-PB/GS method is a promising technique in predicting ligand/receptor binding affinity and it can be used to screen relatively large sets of molecules in a reasonable amount of computer time.

摘要

四氢咪唑并-[4,5,l-jk][1,4]-苯并二氮杂卓-2-(1H)-酮(TIBO)衍生物是重要的非核苷类人类免疫缺陷病毒-1逆转录酶抑制剂(NNRTI)。几种TIBO衍生物已显示出高效抑制逆转录酶(RT)的能力,其中一种(替韦拉平)已进入临床试验阶段。结合自由能(FEB)是一种以数值方式表达配体与其受体结合亲和力的指标,已应用于合理药物设计中的候选物筛选。在本研究中,对42种TIBO在RT中的FEB进行了研究。相对FEB以范德华力、静电作用、溶剂化作用和非极性溶剂化能项的线性组合形式表示。所研究的TIBO的预测FEB活性与实验活性(pIC50)具有良好的相关性(r(2) = 0.8680,q(2) = 0.8298)。基于本文报道的数据,具有高斯平滑介电常数函数方法(PB/GS)的有限差分泊松玻尔兹曼溶剂化能项在预测TIBO与RT的结合亲和力方面非常重要。总之,Dock-分子力学(MM)-PB/GS方法是一种很有前景的预测配体/受体结合亲和力的技术,它可用于在合理的计算机时间内筛选相对大量的分子。

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