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RASSF2的比较建模、分子对接及潜在结合口袋的揭示;一种候选癌症基因

Comparative Modeling, Molecular Docking, and Revealing of Potential Binding Pockets of RASSF2; a Candidate Cancer Gene.

作者信息

Kanwal Sonia, Jamil Farrukh, Ali Ahmad, Sehgal Sheikh Arslan

机构信息

Department of Biosciences, COMSATS Institute of Information Technology, Sahiwal, Pakistan.

State Key Laboratory of Biomembrane and Membrane Biotechnology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.

出版信息

Interdiscip Sci. 2017 Jun;9(2):214-223. doi: 10.1007/s12539-016-0145-z. Epub 2016 Jan 18.

Abstract

RASSF2, potential tumor suppressor gene, acts as a KRAS-specific effectors protein and may promote apoptosis and cell cycle arrest. It stabilizes STK3/MST2 by protecting it from proteasomal degradation. RASSF2 plays a significant role against the inhibition of cancer. MODELLER (9v15) and online servers (I-Tasser, SwissModel, 3D-JigSaw, ModWeb) were utilized to generate 3D structures of the RASSF2 based on homology modeling. A comparison between models predicted by MODELLER (9v15) and Web servers had been checked through utilized evaluation tools. The most potent model for RASSF2 was analyzed and selected for molecular docking studies. The binding pockets were revealed for binding studies through Site Hound. AutoDock Vina and AutoDock4 were utilized for molecular docking, and the attempt of this experiment was to identify the ligands for RASSF2. The selected compounds may act as regulators and regulate the normal activity of RASSF2. It was also analyzed and observed that the selected compounds showed least binding energy and high-affinity binding in predicted top binding domain. The determination of protein function is based on accurate identification of binding sites in protein structures. The binding site is known, and it may allow the ligand type and protein function to be determined by performing in silico and experimental procedures. The detection, comparison, and analysis of binding pockets are pivotal to drug discovery. It proposed that predicted structure is reliable for the structural insights and functional studies. The predicted binding pockets may lead to further analysis (drug discovery), used against cancer study.

摘要

RASSF2是一种潜在的肿瘤抑制基因,作为KRAS特异性效应蛋白发挥作用,可能促进细胞凋亡和细胞周期停滞。它通过保护STK3/MST2免受蛋白酶体降解来使其稳定。RASSF2在对抗癌症抑制方面发挥着重要作用。利用MODELLER(9v15)和在线服务器(I-Tasser、SwissModel、3D-JigSaw、ModWeb)基于同源建模生成RASSF2的三维结构。通过使用评估工具检查了由MODELLER(9v15)预测的模型与网络服务器预测的模型之间的比较。分析并选择了RASSF2最有效的模型用于分子对接研究。通过Site Hound揭示结合口袋用于结合研究。使用AutoDock Vina和AutoDock4进行分子对接,本实验的目的是鉴定RASSF2的配体。所选化合物可能作为调节剂并调节RASSF2的正常活性。还分析并观察到所选化合物在预测的顶级结合域中显示出最低的结合能和高亲和力结合。蛋白质功能的确定基于对蛋白质结构中结合位点的准确识别。结合位点已知,通过进行计算机模拟和实验程序可能确定配体类型和蛋白质功能。结合口袋的检测、比较和分析对于药物发现至关重要。提出预测结构对于结构洞察和功能研究是可靠的。预测的结合口袋可能导致进一步分析(药物发现),用于癌症研究。

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