Ali Iqra, Rasheed Muhammad Asif, Cavalu Simona, Rahim Kashif, Ijaz Sana, Yahya Galal, Goh Lucky Poh Wah, Popoviciu Mihaela Simona
Department of Biosciences, COMSATS (Commission on Science and Technology for Sustainable Development in the South) University Islamabad, Sahiwal Campus, Sahiwal 57000, Pakistan.
Department of Biosciences, COMSATS (Commission on Science and Technology for Sustainable Development in the South) University Islamabad, Islamabad Campus, Islamabad 45550, Pakistan.
Biomedicines. 2023 Mar 6;11(3):793. doi: 10.3390/biomedicines11030793.
The pandemic outbreak of human coronavirus is a global health concern that affects people of all ages and genders, but there is currently still no effective, approved and potential drug against human coronavirus, as many other coronavirus vaccines have serious side effects while the development of small antiviral inhibitors has gained tremendous attention. For this research, HE was used as a therapeutic target, as the spike protein displays a high binding affinity for both host ACE2 and viral HE glycoprotein. Molecular docking, pharmacophore modelling and virtual screening of 38,000 natural compounds were employed to find out the best natural inhibitor against human coronaviruses with more efficiency and fewer side effects and further evaluated via MD simulation, PCA, DCCR and MMGBSA. The lead compound 'Calceolarioside B' was identified on the basis of pharmacophoric features which depict favorable binding (ΔGbind -37.6799 kcal/mol) with the HE(5N11) receptor that describes positive correlation movements in active site residues with better stability, a robust H-bond network, compactness and reliable ADMET properties. The plant containing the Calceolarioside B compound could be used as a potential inhibitor that shows a higher efficacy and potency with fewer side effects. This research work will aid investigators in the testing and identification of chemicals that are effective and useful against human coronavirus.
人类冠状病毒的大流行爆发是一个全球健康问题,影响所有年龄和性别的人群,但目前仍然没有针对人类冠状病毒的有效、获批且有潜力的药物,因为许多其他冠状病毒疫苗有严重的副作用,而小型抗病毒抑制剂的研发受到了极大关注。在本研究中,血凝素酯酶(HE)被用作治疗靶点,因为刺突蛋白对宿主血管紧张素转换酶2(ACE2)和病毒HE糖蛋白均显示出高结合亲和力。采用分子对接、药效团建模和对38000种天然化合物进行虚拟筛选,以找出针对人类冠状病毒的最佳天然抑制剂,其效率更高且副作用更少,并通过分子动力学模拟、主成分分析、动态聚类共配体分析和分子力学广义玻恩表面面积法进行进一步评估。基于药效团特征鉴定出先导化合物“Calceolarioside B”,其与HE(5N11)受体表现出良好的结合(结合自由能ΔGbind -37.6799 kcal/mol),表明活性位点残基的正向相关运动具有更好的稳定性、强大的氢键网络、紧密性和可靠的药物代谢及毒性性质。含有Calceolarioside B化合物的植物可作为一种潜在抑制剂,显示出更高的疗效和效力且副作用更少。这项研究工作将有助于研究人员测试和鉴定对人类冠状病毒有效且有用的化学物质。