Knany Hamada R, Elsabbagh Sherif A, Shehata Moustafa A, Eldehna Wagdy M, Bekhit Adnan A, Ibrahim Tamer M
Department of Pharmacognosy, Faculty of Pharmacy, Mansoura University, Mansoura, 35516, Egypt.
Biochemistry Department, Institute of Pharmacy, Eberhard-Karls University, Auf der Morgenstelle 8, 72076, Tuebingen, Germany.
Virology. 2023 Oct;587:109863. doi: 10.1016/j.virol.2023.109863. Epub 2023 Aug 5.
In the current medical era, there is an urgent necessity to identify new effective drugs to enrich the COVID-19's therapeutic arsenal. The SARS-COV-2 NSP13/helicase enzyme has been identified as a potential target for developing novel COVID-19 inhibitors. In this work, we aimed at endorsing effective natural products with potential inhibitory action towards the NSP13 through the virtual screening of 1012 natural products of botanical and marine origin from the South African Natural Compounds Database (SANCDB). The molecules were docked into the NTPase active site, and the best twelve compounds were chosen for further analysis. Thereafter, a combination of molecular dynamics simulations and MM-GBSA free energy calculations were carried out for a subset of best hits complexed with NSP13 helicase. We believe that the findings of this work will pave the way for additional research and experimental validation of some natural products as viable NSP13 helicase inhibitors.
在当前的医学时代,迫切需要鉴定新的有效药物以丰富新冠病毒的治疗手段。严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的NSP13解旋酶已被确定为开发新型新冠病毒抑制剂的潜在靶点。在这项工作中,我们旨在通过虚拟筛选南非天然化合物数据库(SANCDB)中的1012种植物源和海洋源天然产物,来认可对NSP13具有潜在抑制作用的有效天然产物。将这些分子对接至NTPase活性位点,并选择最佳的十二种化合物进行进一步分析。此后,对与NSP13解旋酶复合的最佳命中分子子集进行了分子动力学模拟和MM-GBSA自由能计算。我们相信,这项工作的发现将为进一步研究和实验验证某些天然产物作为可行的NSP13解旋酶抑制剂铺平道路。