自动停靠
对接(动物)
蛋白质-配体对接
计算机科学
嵌合体(遗传学)
计算生物学
软件
虚拟筛选
药物发现
人工智能
生物信息学
化学
生物
程序设计语言
生物化学
生物信息学
医学
基因
护理部
作者
Sania Safdar Butt,Yasmin Badshah,Maria Shabbir,Mehak Rafiq
出处
期刊:JMIR bioinformatics and biotechnology
[JMIR Publications Inc.]
日期:2020-06-19
卷期号:1 (1): e14232-e14232
被引量:34
摘要
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.
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