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探索 SARS-CoV-2 ORF3a 中的多胺相互作用和结合口袋。

Exploring polyamine interactions and binding pockets in SARS-CoV-2 ORF3a.

机构信息

The Center of Excellence in Computational Chemistry, Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

School of Mathematics and Natural Sciences, University of Southern Mississippi, Hattiesburg, MS, 39406, USA.

出版信息

J Mol Graph Model. 2023 Jul;122:108487. doi: 10.1016/j.jmgm.2023.108487. Epub 2023 Apr 10.

Abstract

Ongoing global pandemic caused by coronavirus (COVID-19) requires urgent development of vaccines, treatments, and diagnostic tools. Open reading frame 3a (ORF3a) from severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is considered to be a potential drug target for COVID-19 treatment. ORF3a is an accessory protein that plays a significant role in virus-host interactions and in facilitating host immune responses. Using putrescine, spermidine and spermine, an aliphatic polyamine for the activity suppression of ORF3a appears to be a promising approach in finding new targets for drug design. In this study, we explored the possible binding poses of polyamines to the ORF3a protein using a combination of various computational approaches i.e. pocket prediction, blind and site-specific molecular docking, molecular dynamics and ligand flooding simulations. The results showed that the tip of cytoplasmic domain and the upper tunnel of transmembrane domain of ORF3a provide a suitable binding site specific for the polyamines. MD simulations revealed the stability of spermidine binding in the upper tunnel pocket of ORF3a through salt bridge and hydrogen bond interactions between the amine groups of the ligand and negatively charged residues of ORF3a. These findings can be helpful in designing new therapeutic drugs.

摘要

由冠状病毒(COVID-19)引起的持续全球大流行需要紧急开发疫苗、治疗方法和诊断工具。严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)的开放阅读框 3a(ORF3a)被认为是 COVID-19 治疗的潜在药物靶点。ORF3a 是一种辅助蛋白,在病毒-宿主相互作用和促进宿主免疫反应中发挥重要作用。使用腐胺、亚精胺和精胺等脂肪族多胺来抑制 ORF3a 的活性似乎是寻找药物设计新靶点的有前途的方法。在这项研究中,我们使用各种计算方法(即口袋预测、盲目和特异性分子对接、分子动力学和配体淹没模拟)组合,探索了多胺与 ORF3a 蛋白的可能结合构象。结果表明,ORF3a 的细胞质域末端和跨膜域的上隧道提供了一个适合多胺的特定结合位点。MD 模拟表明,通过配体的胺基与 ORF3a 的负电荷残基之间的盐桥和氢键相互作用,亚精胺在 ORF3a 的上隧道口袋中结合稳定。这些发现有助于设计新的治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fb0/10083643/681f5b4256ad/ga1_lrg.jpg

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