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针对生存素蛋白的海兔素类似物的分子对接分析

Molecular docking analysis of aplysin analogs targeting survivin protein.

作者信息

Shakeel Eram, Akhtar Salman, Khan Mohd Kalim Ahmad, Lohani Mohtashim, Arif Jamal M, Siddiqui Mohd Haris

机构信息

Advanced Centre for Bioengineering and Bioinformatics (ACBB), Integral Information and Research Centre (IIRC), Integral University, Lucknow, Uttar Pradesh, India-226026.

Department of Bioengineering, Faculty of Engineering, Integral University, Lucknow, Uttar Pradesh, India-226026.

出版信息

Bioinformation. 2017 Sep 30;13(9):293-300. doi: 10.6026/97320630013293. eCollection 2017.

Abstract

Survivin (IAP proteins) remains an important target for anticancer drug development as it is reported to be over-expressed in tumor cells to enhance resistance to apoptotic stimuli. The study focuses on virtual screening of marine compounds inhibiting survivin, a multifunctional protein, using a computational approach. Structures of compounds were prepared using ChemDraw Ultra 10. Software and converted into its 3D PDB structure and its energy was minimized using Discovery Studio client 2.5. The target protein, survivin was retrieved from RCSB PDB. Lipinski's rule and ADMET toxicity profiling was carried out on marine compounds and the filtered compounds were further promoted for molecular docking analysis and interaction studies using AutoDock Tools 4.0. Molecular docking results revealed that analog (AP 4) of Aplysin, showed very promising inhibitory potential against survivin with a binding energy of -8.75 kcal/mol and Ki 388.28 nM as compared to its known inhibitor, Celecoxib having binding energy of -6.65 kcal/mol and Ki 13.43 μM. AP 4. The analog depicted similarity in pattern when compared to standard. The result proposes AP 4, is an effective molecule exhibiting prominent potential to inhibit survivin and thus promoting apoptosis in tumor cells.

摘要

生存素(IAP蛋白)仍是抗癌药物研发的重要靶点,因为据报道它在肿瘤细胞中过度表达,从而增强对凋亡刺激的抗性。该研究聚焦于使用计算方法对抑制生存素(一种多功能蛋白)的海洋化合物进行虚拟筛选。化合物结构使用ChemDraw Ultra 10软件制备,并转换为其3D PDB结构,其能量使用Discovery Studio client 2.5进行最小化处理。目标蛋白生存素从RCSB PDB中获取。对海洋化合物进行了Lipinski规则和ADMET毒性分析,筛选后的化合物进一步使用AutoDock Tools 4.0进行分子对接分析和相互作用研究。分子对接结果显示,海兔素类似物(AP 4)对生存素表现出非常有前景的抑制潜力,结合能为-8.75 kcal/mol,Ki为388.28 nM,而其已知抑制剂塞来昔布的结合能为-6.65 kcal/mol,Ki为13.43 μM。AP 4与标准物相比,在模式上具有相似性。结果表明AP 4是一种有效的分子,具有显著的抑制生存素的潜力,从而促进肿瘤细胞凋亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8b8/5651222/a5395cc8d764/97320630013293F1.jpg

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