Department of Biochemistry, Era's Lucknow Medical College and Hospital, Era University, Lucknow, UP, India.
Department of Biotechnology, Era's Lucknow Medical College and Hospital, Era University, Lucknow, UP, India.
J Biomol Struct Dyn. 2022 Mar;40(4):1858-1908. doi: 10.1080/07391102.2020.1835725. Epub 2020 Nov 27.
Coronaviruses are etiological agents of extreme human and animal infection resulting in abnormalities primarily in the respiratory tract. Presently, there is no defined COVID-19 intervention and clinical trials of prospective therapeutic agents are still in the nascent stage. (L.) Dunal (WS), is an important medicinal plant in Ayurveda. The present study aimed to evaluate the antiviral potential of selected WS phytoconstituents against the novel SARS-CoV-2 target proteins and human ACE2 receptor using methods. Most of the phytoconstituents displayed good absorption and transport kinetics and were also found to display no associated mutagenic or adverse effect(s). Molecular docking analyses revealed that most of the WS phytoconstituents exhibited potent binding to human ACE2 receptor, SAR-CoV and SARS-CoV-2 spike glycoproteins as well as the two main SARS-CoV-2 proteases. Most of the phytoconstituents were predicted to undergo Phase-I metabolism prior to excretion. All phytoconstituents had favorable bioactivity scores with respect to various receptor proteins and target enzymes. SAR analysis revealed that the number of oxygen atoms in the withanolide backbone and structural rearrangements were crucial for effective binding. Molecular simulation analyses of SARS-CoV-2 spike protein and papain-like protease with Withanolides A and B, respectively, displayed a stability profile at 300 K and constant RMSDs of protein side chains and Cα atoms throughout the simulation run time. In a nutshell, WS phytoconstituents warrant further investigations and to unravel their molecular mechanism(s) and modes of action for their future development as novel antiviral agents against COVID-19.
冠状病毒是导致人和动物严重感染的病原体,主要导致呼吸道异常。目前,还没有针对 COVID-19 的明确干预措施,针对潜在治疗药物的临床试验仍处于起步阶段。(L.)Dunal(WS)是阿育吠陀医学中的一种重要药用植物。本研究旨在使用方法评估选定 WS 植物成分对新型 SARS-CoV-2 靶蛋白和人 ACE2 受体的抗病毒潜力。大多数植物成分显示出良好的吸收和转运动力学特性,并且没有发现相关的诱变或不良影响。分子对接分析表明,大多数 WS 植物成分与人类 ACE2 受体、SAR-CoV 和 SARS-CoV-2 刺突糖蛋白以及两种主要的 SARS-CoV-2 蛋白酶表现出很强的结合能力。大多数植物成分在排泄前被预测会经历 I 相代谢。所有植物成分在各种受体蛋白和靶酶方面都具有良好的生物活性评分。SAR 分析表明,在 withanolide 骨架中的氧原子数量和结构重排对于有效结合至关重要。用 Withanolides A 和 B 分别对 SARS-CoV-2 刺突蛋白和木瓜蛋白酶样蛋白酶进行分子模拟分析,在 300K 下显示出稳定的图谱,并且在整个模拟运行时间内,蛋白质侧链和 Cα原子的均方根偏差保持稳定。简而言之,WS 植物成分值得进一步研究,以揭示它们针对 COVID-19 的作为新型抗病毒药物的分子机制和作用模式。