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基于配体的药效团建模和定量构效关系方法以鉴定潜在的登革热蛋白酶抑制剂。

Ligand-based pharmacophore modeling and QSAR approach to identify potential dengue protease inhibitors.

作者信息

Poola Anushka A, Prabhu Prithvi S, Murthy T P Krishna, Murahari Manikanta, Krishna Swati, Samantaray Mahesh, Ramaswamy Amutha

机构信息

Department of Biotechnology, M. S. Ramaiah Institute of Technology, Bengaluru, Karnataka, India.

Department of Pharmacy, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Andhra Pradesh, India.

出版信息

Front Mol Biosci. 2023 Feb 23;10:1106128. doi: 10.3389/fmolb.2023.1106128. eCollection 2023.

Abstract

The viral disease dengue is transmitted by the Aedes mosquito and is commonly seen to occur in the tropical and subtropical regions of the world. It is a growing public health concern. To date, other than supportive treatments, there are no specific antiviral treatments to combat the infection. Therefore, finding potential compounds that have antiviral activity against the dengue virus is essential. The NS2B-NS3 dengue protease plays a vital role in the replication and viral assembly. If the functioning of this protease were to be obstructed then viral replication would be halted. As a result, this NS2B-NS3 proves to be a promising target in the process of anti-viral drug design. Through this study, we aim to provide suggestions for compounds that may serve as potent inhibitors of the dengue NS2B-NS3 protein. Here, a ligand-based pharmacophore model was generated and the ZINC database was screened through ZINCPharmer to identify molecules with similar features. 2D QSAR model was developed and validated using reported 4-Benzyloxy Phenyl Glycine derivatives and was utilized to predict the IC50 values of unknown compounds. Further, the study is extended to molecular docking to investigate interactions at the active pocket of the target protein. ZINC36596404 and ZINC22973642 showed a predicted pIC50 of 6.477 and 7.872, respectively. They also showed excellent binding with NS3 protease as is evident from their binding energy of -8.3and -8.1 kcal/mol, respectively. ADMET predictionsofcompounds have shown high drug-likeness. Finally, the molecular dynamic simulations integrated with MM-PBSA binding energy calculations confirmedboth identified ZINC compounds as potential hit moleculeswith good stability.

摘要

病毒性疾病登革热通过伊蚊传播,常见于世界热带和亚热带地区。它日益引起公众对健康的关注。迄今为止,除了支持性治疗外,尚无对抗该感染的特异性抗病毒治疗方法。因此,寻找对登革热病毒具有抗病毒活性的潜在化合物至关重要。NS2B-NS3登革热蛋白酶在病毒复制和组装中起着至关重要的作用。如果该蛋白酶的功能受到阻碍,那么病毒复制将停止。因此,NS2B-NS3在抗病毒药物设计过程中被证明是一个有前景的靶点。通过本研究,我们旨在为可能作为登革热NS2B-NS3蛋白强效抑制剂的化合物提供建议。在此,生成了基于配体的药效团模型,并通过ZINCPharmer筛选ZINC数据库以识别具有相似特征的分子。使用报道的4-苄氧基苯基甘氨酸衍生物开发并验证了二维定量构效关系(2D QSAR)模型,并用于预测未知化合物的半数抑制浓度(IC50)值。此外,该研究扩展到分子对接,以研究在靶蛋白活性口袋处的相互作用。ZINC36596404和ZINC22973642的预测半数抑制浓度负对数值(pIC50)分别为6.477和7.872。它们与NS3蛋白酶也显示出良好的结合,这从它们分别为-8.3和-8.1千卡/摩尔的结合能中可以明显看出。化合物的药物代谢动力学(ADMET)预测显示出较高的类药性质。最后,结合MM-PBSA结合能计算的分子动力学模拟证实了这两种已鉴定的ZINC化合物均为具有良好稳定性的潜在命中分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32f5/9996041/af7e36ae5ef0/fmolb-10-1106128-g001.jpg

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