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β-咔啉生物碱比瑞德西韦代谢物GS-441524更有效地诱导结构可塑性并抑制SARS-CoV-2 nsp3宏结构域:计算方法。

β-Carboline alkaloids induce structural plasticity and inhibition of SARS-CoV-2 nsp3 macrodomain more potently than remdesivir metabolite GS-441524: computational approach.

作者信息

Ayipo Yusuf Oloruntoyin, Yahaya Sani Najib, Babamale Halimah Funmilayo, Ahmad Iqrar, Patel Harun, Mordi Mohd Nizam

机构信息

Centre for Drug Research, Universiti Sains Malaysia, Pulau Pinang Malaysia.

Department of Chemical, Geological and Physical Sciences, Kwara State University, Ilorin Nigeria.

出版信息

Turk J Biol. 2021 Aug 30;45(4):503-517. doi: 10.3906/biy-2106-64. eCollection 2021.

Abstract

The nsp3 macrodomain is implicated in the viral replication, pathogenesis and host immune responses through the removal of ADP-ribosylation sites during infections of coronaviruses including the SARS-CoV-2. It has ever been modulated by macromolecules including the ADP-ribose until Ni and co-workers recently reported its inhibition and plasticity enhancement unprecedentedly by metabolite, , creating an opportunity for investigating other biodiverse small molecules such as β-Carboline (βC) alkaloids. In this study, 1497 βC analogues from the HiT2LEAD chemical database were screened, using computational approaches of Glide XP docking, molecular dynamics simulation and pk-CSM ADMET predictions. Selectively, βC ligands, , and demonstrated higher binding affinities to the receptor, indicated by XP docking scores of -10.72, -10.01, -9.63 and -9.48 kcal/mol respectively than and with -4.68 and -9.41 kcal/mol respectively. Consistently, their binding free energies were -36.07, -23.77, -24.07 and -17.76 kcal/mol respectively, while and showed -21.22 and -24.20 kcal/mol respectively. Interestingly, the selected βC ligands displayed better stability and flexibility for enhancing the plasticity of the receptor than , especially and . Their predicted ADMET parameters favour druggability and low expressions for toxicity. Thus, they are recommended as promising adjuvant/standalone anti-SARS-CoV-2 candidates for further study.: SARS-CoV-2, nsp3 macrodomain, ADP-ribose, β-carboline, bioinformatics, drug design.

摘要

nsp3 宏结构域通过在包括 SARS-CoV-2 在内的冠状病毒感染期间去除 ADP-核糖基化位点,参与病毒复制、发病机制和宿主免疫反应。它曾受到包括 ADP-核糖在内的大分子的调节,直到 Ni 及其同事最近报道其受到代谢物前所未有的抑制并增强了可塑性,这为研究其他生物多样性小分子如 β-咔啉(βC)生物碱创造了机会。在本研究中,使用 Glide XP 对接、分子动力学模拟和 pk-CSM ADMET 预测的计算方法,从 HiT2LEAD 化学数据库中筛选了 1497 种 βC 类似物。选择性地,βC 配体 、 、 和 对受体表现出更高的结合亲和力,XP 对接分数分别为 -10.72、-10.01、-9.63 和 -9.48 kcal/mol,分别高于 (-4.68 kcal/mol)和 (-9.41 kcal/mol)。一致地,它们的结合自由能分别为 -36.07、-23.77、-24.07 和 -17.76 kcal/mol,而 和 分别为 -21.22 和 -24.20 kcal/mol。有趣的是,所选的 βC 配体在增强受体可塑性方面表现出比 更好的稳定性和灵活性,尤其是 和 。它们预测的 ADMET 参数有利于成药性和低毒性表达。因此,推荐它们作为有前景的辅助/独立抗 SARS-CoV-2 候选物进行进一步研究。:SARS-CoV-2、nsp3 宏结构域、ADP-核糖、β-咔啉、生物信息学、药物设计

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dd4/8573841/8ce1c0cc8adb/turkjbio-45-503-fig001.jpg

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