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基于表位的潜在疫苗候选物,用于对抗严重急性呼吸综合征冠状病毒2大流行的体液免疫和细胞介导免疫。

Epitope-Based Potential Vaccine Candidate for Humoral and Cell-Mediated Immunity to Combat Severe Acute Respiratory Syndrome Coronavirus 2 Pandemic.

作者信息

Das Bratin Kumar, Chakraborty Debashree

机构信息

Biophysical and Computational Laboratory, Department of Chemistry, National Institute of Technology Karnataka, Surathkal, Mangalore, 575025, India.

出版信息

J Phys Chem Lett. 2020 Nov 19;11(22):9920-9930. doi: 10.1021/acs.jpclett.0c02846. Epub 2020 Nov 11.

Abstract

The emergence of severe acute respiratory syndrome from novel Coronavirus (SARS-CoV-2) has put an immense pressure worldwide where vaccination is believed to be an efficient way for developing hard immunity. Herein, we employ immunoinformatic tools to identify B-cell, T-cell epitopes associated with the spike protein of SARS-CoV-2, which is important for genome release. The results showed that the highly immunogenic epitopes located at the stalk part are mostly conserved compared to the receptor binding domain (RDB). Further, two vaccine candidates were computationally modeled from the linear B-cell, T-cell epitopes. Molecular docking reveals the crucial interactions of the vaccines with immune-receptors, and their stability is assessed by MD simulation studies. The chimeric vaccines showed remarkable binding affinity toward the immune cell receptors computed by the MM/PBSA method. van der Waals and electrostatic interactions are found to be the dominant factors for the stability of the complexes. The molecular-level interaction obtained from this study may provide deeper insight into the process of vaccine development against the pandemic of COVID-19.

摘要

新型冠状病毒(SARS-CoV-2)引发的严重急性呼吸综合征在全球范围内带来了巨大压力,而接种疫苗被认为是产生强大免疫力的有效方式。在此,我们运用免疫信息学工具来鉴定与SARS-CoV-2刺突蛋白相关的B细胞、T细胞表位,这对于病毒基因组释放很重要。结果表明,与受体结合域(RBD)相比,位于柄部的高免疫原性表位大多是保守的。此外,从线性B细胞、T细胞表位通过计算机模拟构建了两种候选疫苗。分子对接揭示了疫苗与免疫受体的关键相互作用,并通过分子动力学模拟研究评估了它们的稳定性。通过MM/PBSA方法计算得出,嵌合疫苗对免疫细胞受体具有显著的结合亲和力。范德华力和静电相互作用被发现是复合物稳定性的主要因素。本研究获得的分子水平相互作用可能为针对COVID-19大流行的疫苗开发过程提供更深入的见解。

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