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异烟肼-NAD加合物互变异构体与结核分枝杆菌烯酰-ACP还原酶(InhA)活性位点的结合:一种理论方法。

Binding of the tautomeric forms of isoniazid-NAD adducts to the active site of the Mycobacterium tuberculosis enoyl-ACP reductase (InhA): a theoretical approach.

作者信息

Stigliani Jean-Luc, Arnaud Philippe, Delaine Tamara, Bernardes-Génisson Vania, Meunier Bernard, Bernadou Jean

机构信息

Laboratoire de Chimie de Coordination du CNRS, 205 Route de Narbonne, 31077 Toulouse Cedex 4, France.

出版信息

J Mol Graph Model. 2008 Nov;27(4):536-45. doi: 10.1016/j.jmgm.2008.09.006. Epub 2008 Sep 17.

Abstract

The front-line antituberculosis drug isoniazid (INH) inhibits InhA, the NADH-dependent fatty acid biosynthesis enoyl ACP-reductase from Mycobacterium tuberculosis, via formation of covalent adducts with NAD (INH-NAD adducts). While ring tautomers were found the main species formed in solution, only the 4S chain INH-NAD tautomer was evidenced in the crystallized InhA:INH-NAD complex. In this study we attempted to explore the modes of interaction and energy binding of the different isomers placed in the active site of InhA with the help of various molecular modelling techniques. Ligand and enzyme models were generated with the help of the Vega ZZ program package. Resulting ligands were then docked into the InhA active site individually using computational automated docking package AUTODOCK 3.0.5. The more relevant docked conformations were then used to compute the interaction energy between the ligands and the InhA cavity. The AM1 Hamiltonian and the QM/MM ONIOM methodologies were used and the results compared. The various tautomers were found docked in almost the same place where INH-NAD was present as predicted by earlier X-ray crystallographic studies. However, some changes of ligand conformation and of the interactions ligand-protein were evidenced. The lower binding energy was observed for the 4S chain adduct that probably represents the effective active form of the INH-NAD adducts, as compared to the 4R epimer. The two 4S,7R and 4R,7S ring tautomers show intermediate and similar binding energies contrasting with their different experimental inhibitory potency on InhA. As a possible explanation based on calculated conformations, we formulated the hypothesis of an initial binding of the two ring tautomers to InhA followed by opening of only the ring hemiamidal 4S,7R tautomer (possibly catalyzed by Tyr158 phenolate basic group) to give the 4S chain INH-NAD tight-binding inhibitor. The predictions of ligand-protein interactions at the molecular level can be of primary importance in elucidating the mechanisms of action of isoniazid and InhA-related resistances, in identifying the effective mycobactericidal entities and, in further step, in the design of a new generation of antitubercular drugs.

摘要

一线抗结核药物异烟肼(INH)通过与NAD形成共价加合物(INH-NAD加合物)来抑制结核分枝杆菌中依赖NADH的脂肪酸生物合成烯酰ACP还原酶InhA。虽然发现环互变异构体是溶液中形成的主要物种,但在结晶的InhA:INH-NAD复合物中仅证实了4S链INH-NAD互变异构体。在本研究中,我们试图借助各种分子建模技术探索放置在InhA活性位点的不同异构体的相互作用模式和能量结合。借助Vega ZZ程序包生成配体和酶模型。然后使用计算自动对接程序包AUTODOCK 3.0.5将所得配体分别对接至InhA活性位点。然后使用更相关的对接构象来计算配体与InhA腔之间的相互作用能。使用AM1哈密顿量和QM/MM ONIOM方法并比较结果。如早期X射线晶体学研究所预测的,发现各种互变异构体对接在与INH-NAD相同的位置。然而,配体构象和配体-蛋白质相互作用发生了一些变化。与4R差向异构体相比,4S链加合物的结合能较低,这可能代表了INH-NAD加合物的有效活性形式。两种4S,7R和4R,7S环互变异构体显示出中等且相似的结合能,这与它们对InhA的不同实验抑制效力形成对比。基于计算构象的一种可能解释,我们提出了两种环互变异构体最初与InhA结合,随后仅打开环半缩醛4S,7R互变异构体(可能由Tyr158酚盐碱性基团催化)以产生4S链INH-NAD紧密结合抑制剂的假设。在分子水平上预测配体-蛋白质相互作用对于阐明异烟肼和InhA相关耐药性的作用机制、鉴定有效的杀分枝杆菌实体以及进一步设计新一代抗结核药物可能至关重要。

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