Universidad del Zulia (LUZ), Facultad Experimental de Ciencias (FEC), Departamento de Biología, Laboratorio de Genética y Biología Molecular (LGBM), 4001 Maracaibo, Venezuela; Instituto Venezolano de Investigaciones Científicas (IVIC), Centro de Estudios Botánicos y Agroforestales (CEBA), Laboratorio de Protección Vegetal (LPV), 4001 Maracaibo, Venezuela.
Universidad del Zulia (LUZ), Facultad Experimental de Ciencias (FEC), Departamento de Biología, Laboratorio de Genética y Biología Molecular (LGBM), 4001 Maracaibo, Venezuela.
Biophys Chem. 2021 Nov;278:106677. doi: 10.1016/j.bpc.2021.106677. Epub 2021 Aug 19.
The SARS-CoV-2 pandemic has accelerated the study of existing drugs. The mixture of homologs called ivermectin (avermectin-B1a [HB1a] + avermectin-B1b [HB1b]) has shown antiviral activity against SARS-CoV-2 in vitro. However, there are few reports on the behavior of each homolog. We investigated the interaction of each homolog with promising targets of interest associated with SARS-CoV-2 infection from a biophysical and computational-chemistry perspective using docking and molecular dynamics. We observed a differential behavior for each homolog, with an affinity of HB1b for viral structures, and of HB1a for host structures considered. The induced disturbances were differential and influenced by the hydrophobicity of each homolog and of the binding pockets. We present the first comparative analysis of the potential theoretical inhibitory effect of both avermectins on biomolecules associated with COVID-19, and suggest that ivermectin through its homologs, has a multiobjective behavior.
SARS-CoV-2 大流行加速了现有药物的研究。称为伊维菌素(阿维菌素-B1a [HB1a] + 阿维菌素-B1b [HB1b])的同源混合物在体外显示出对 SARS-CoV-2 的抗病毒活性。然而,关于每个同源物的行为的报道很少。我们从生物物理和计算化学的角度使用对接和分子动力学研究了每个同源物与 SARS-CoV-2 感染相关的有前途的靶标的相互作用。我们观察到每个同源物的行为存在差异,HB1b 对病毒结构具有亲和力,而 HB1a 对宿主结构具有亲和力。诱导的干扰是不同的,并且受到每个同源物和结合口袋的疏水性的影响。我们首次对两种伊维菌素对与 COVID-19 相关的生物分子的潜在理论抑制作用进行了比较分析,并表明伊维菌素通过其同源物具有多目标行为。