计算探索伊沙替丁衍生物在结核病中的 InhA 抑制作用:分子对接、MD 模拟和 ADMET 见解。

Vaishali Pavalbhai Patel, Rati Kailash Prasad Tripathi, Abhay Dharamsi
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引用次数: 0

摘要

背景:抗结核药物发现是一个关键的研究领域,旨在解决结核分枝杆菌给全球健康带来的负担。如今,与传统的耗费大量人力和时间的药物设计方法相比,计算技术提高了药物开发的可能性。药物设计的关键目标是找出能够选择性靶向蛋白质的化合物,从而破坏其酶活性。InhA(依赖 NADH 的烯酰-酰基载体蛋白还原酶)是抗击结核病的靶向方法中的佼佼者。伊沙替丁衍生物因其多种药理活性而备受关注:目的:通过靶向 InhA,鉴定可作为抗结核药物研发潜在化学模板的新型异汀衍生物:本研究利用各种计算方法,包括分子对接、结合自由能计算和构象配准研究,研究了精心挑选的 88 种异atin 衍生物在 InhA 活性位点的结合模式和相互作用。研究还对最有希望的分子进行了 MD 模拟,以检查蛋白质配体复合物的稳定性,并对顶级化合物进行了体内 ADMET 分析,以预测它们的药代动力学和毒性特性:结果:研究结果深入揭示了导致 InhA 抑制作用的结构特征,评估了异汀衍生物的总体类药物特性,并确定了具有进一步优化潜力的化合物 48(BA= -10.4 kcal mol-1)。MD 模拟分析表明,化合物 48 能牢固地结合在 InhA 蛋白中,表现出最小的构象波动和更高的稳定性:综上所述,isatin 衍生物是在抗结核治疗过程中开发 InhA 靶向抑制剂的一个新框架。然而,要确认这些衍生物作为潜在的 InhA 抑制剂在结核病治疗中的有效性和安全性,实验验证和深入分析至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational Exploration of Isatin Derivatives for InhA Inhibition in Tuberculosis: Molecular Docking, MD Simulations and ADMET Insights.

Background: Anti-tubercular drug discovery is a critical research area aimed at addressing the global health burden imposed by Mycobacterium tuberculosis. Nowadays, computational techniques have increased the likelihood of drug development compared to traditional, labor-intensive, and time-consuming drug design approaches. The pivotal goal of drug design is to identify compounds capable of selectively targeting protein, thereby disrupting its enzymatic activity. InhA, or NADH-dependent enoyl-acyl carrier protein reductase, stands at the forefront of targeted approaches in the battle against TB. Isatin derivatives have garnered interest for their diverse pharmacological activities.

Objective: To identify novel isatin derivatives that could serve as potential chemical templates for anti-TB drug discovery by targeting InhA.

Methods: The present work utilized various computational approaches, including molecular docking, binding free energy calculations, and conformational alignment studies to investigate the binding mode and interactions of carefully selected dataset of 88 isatin derivatives within InhA active site. Study also employed MD simulations of the most promising molecule to check the stability of the protein-ligand complex and in-silico ADMET profiling of the top compounds to predict their pharmacokinetic and toxicity properties.

Results: Results provided insights into the structural features contributing to InhA inhibition, assessing overall drug-like characteristics of isatin derivatives and identified compound 48 (BA= -10.4 kcal mol-1 ) with potential for further optimization. MD simulation analysis revealed that compound 48 binds firmly within the InhA protein, exhibiting minimal conformational fluctuations and enhanced stability.

Conclusion: Considering the aforementioned, isatin derivatives represents a novel framework for creating targeted InhA inhibitors during anti-TB therapy. However, experimental validations and in-depth analyses are crucial to confirm efficacy and safety of these derivatives as potential InhA inhibitors for TB treatment.

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