Molecular Docking Using Chimera and Autodock Vina Software for Nonbioinformaticians.

Sania Safdar Butt, Yasmin Badshah, Maria Shabbir, Mehak Rafiq
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Abstract

In the field of drug discovery, many methods of molecular modeling have been employed to study complex biological and chemical systems. Experimental strategies are integrated with computational approaches for the identification, characterization, and development of novel drugs and compounds. In modern drug designing, molecular docking is an approach that explores the confirmation of a ligand within the binding site of a macromolecule. To date, many software and tools for docking have been employed. AutoDock Vina (in UCSF [University of California, San Francisco] Chimera) is one of the computationally fastest and most accurate software employed in docking. In this paper, a sequential demonstration of molecular docking of the ligand fisetin with the target protein Akt has been provided, using AutoDock Vina in UCSF Chimera 1.12. The first step involves target protein ID retrieval from the protein database, the second step involves visualization of the protein structure in UCSF Chimera, the third step involves preparation of the target protein for docking, the fourth step involves preparation of the ligand for docking, the fifth step involves docking of the ligand and the target protein as Mol.2 files in Chimera by using AutoDock Vina, and the final step involves interpretation and analysis of the docking results. By following the guidelines and steps outlined in this paper, researchers with no previous background in bioinformatics research can perform computational docking in an easier and more user-friendly manner.

非生物信息学家使用Chimera和Autodock Vina软件进行分子对接
在药物发现领域,许多分子建模的方法被用于研究复杂的生物和化学系统。实验策略与计算方法相结合,用于鉴定、表征和开发新型药物和化合物。在现代药物设计中,分子对接是一种探索在大分子结合位点内确定配体的方法。迄今为止,已经使用了许多用于对接的软件和工具。AutoDock Vina(位于加州大学旧金山分校)是用于对接的计算速度最快、最准确的软件之一。本文利用UCSF Chimera 1.12软件中的AutoDock Vina,提供了配体非瑟酮与靶蛋白Akt分子对接的序列演示。第一步从蛋白质数据库中检索目标蛋白ID,第二步可视化UCSF嵌合体中蛋白质结构,第三步制备对接目标蛋白,第四步制备对接配体,第五步利用AutoDock Vina将配体与目标蛋白作为mol2文件在嵌合体中对接,最后一步对对接结果进行解读和分析。通过遵循本文概述的指导方针和步骤,没有生物信息学研究背景的研究人员可以以更容易和更友好的方式进行计算对接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.90
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