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基于包膜糖蛋白的多表位疫苗,通过计算机模拟策略针对人类疱疹病毒 5 和人类疱疹病毒 6 的合并感染。

Envelope Glycoprotein based multi-epitope vaccine against a co-infection of Human Herpesvirus 5 and Human Herpesvirus 6 using in silico strategies.

机构信息

Department of Biotechnology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore, 632014, Tamil Nadu, India.

Department of Biochemistry, Kalinga Institute of Medical Sciences, KIIT Deemed to Be University, Bhubaneswar, Odisha, India.

出版信息

Glycoconj J. 2022 Dec;39(6):711-724. doi: 10.1007/s10719-022-10083-7. Epub 2022 Oct 13.

Abstract

The Human Betaherpesviruses HHV-5 and HHV-6 are quite inimical in immunocompromised hosts individually. A co-infection of both has been surmised to be far more disastrous. This can be attributed to a synergetic effect of their combined pathologies. While there have been attempts to develop a vaccine against each virus, no efforts were made to contrive an effective prophylaxis for the highly detrimental co-infection. In this study, an ensemble of viral envelope glycoproteins from both the viruses was utilized to design a multi-epitope vaccine using immunoinformatics tools. A collection of bacterial protein toll-like receptor agonists (BPTAs) was screened to identify a highly immunogenic adjuvant for the vaccine construct. The constructed vaccine was analysed using an array of methodologies ranging from World population coverage analysis to Immune simulation, whose results indicate high vaccine efficacy and stability. Furthermore, codon optimization and in silico cloning analysis were performed to check for efficient expression in a bacterial system. Collectively, these findings demonstrate the potential of the constructed vaccine to elicit an immune response against HHV-5 and HHV-6, thus supporting the viability of in vitro and in vivo studies.

摘要

人类β疱疹病毒 HHV-5 和 HHV-6 在免疫功能低下的宿主中各自具有相当的危害性。据推测,两者的合并感染更为严重。这可以归因于它们合并病理的协同作用。虽然已经尝试针对每种病毒开发疫苗,但并未努力针对高度有害的合并感染设计有效的预防措施。在这项研究中,利用来自两种病毒的病毒包膜糖蛋白混合物,使用免疫信息学工具设计了一种多表位疫苗。筛选了一组细菌蛋白 Toll 样受体激动剂 (BPTAs),以鉴定疫苗构建物的高度免疫原性佐剂。使用一系列方法对构建的疫苗进行了分析,包括从全球人口覆盖率分析到免疫模拟,结果表明疫苗具有很高的功效和稳定性。此外,还进行了密码子优化和计算机克隆分析,以检查在细菌系统中的有效表达。总之,这些发现表明构建的疫苗有潜力引发针对 HHV-5 和 HHV-6 的免疫反应,从而支持体外和体内研究的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c5/9557995/dcf10dc5eeee/10719_2022_10083_Fig1_HTML.jpg

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