Suppr超能文献

采用整合免疫信息学和分子建模方法针对三种重要痘病毒的 DNA 依赖性 RNA 聚合酶靶向设计下一代多价疫苗候选物。

Formulation of next-generation polyvalent vaccine candidates against three important poxviruses by targeting DNA-dependent RNA polymerase using an integrated immunoinformatics and molecular modeling approach.

机构信息

Department of Microbiology and Immunology, Faculty of Medicine, Dalhousie University, Halifax, Canada; Department of Pediatrics, IWK Health Center, Canadian Centre for Vaccinology CCfV, Halifax, Canada; Laboratory of Immunity, Shantou University Medical College, Shantou, China; BioForge Canada Limited, Halifax, Canada.

Department of Bioinformatics, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal 576104, India.

出版信息

J Infect Public Health. 2024 Jul;17(7):102470. doi: 10.1016/j.jiph.2024.102470. Epub 2024 Jun 7.

Abstract

BACKGROUND

Poxviruses comprise a group of large double-stranded DNA viruses and are known to cause diseases in humans, livestock animals, and other animal species. The Mpox virus (MPXV; formerly Monkeypox), variola virus (VARV), and volepox virus (VPXV) are among the prevalent poxviruses of the Orthopoxviridae genera. The ongoing Mpox infectious disease pandemic caused by the Mpox virus has had a major impact on public health across the globe. To date, only limited repurposed antivirals and vaccines are available for the effective treatment of Mpox and other poxviruses that cause contagious diseases.

METHODS

The present study was conducted with the primary goal of formulating multi-epitope vaccines against three evolutionary closed poxviruses i.e., MPXV, VARV, and VPXV using an integrated immunoinformatics and molecular modeling approach. DNA-dependent RNA polymerase (DdRp), a potential vaccine target of poxviruses, has been used to determine immunodominant B and T-cell epitopes followed by interactions analysis with Toll-like receptor 2 at the atomic level.

RESULTS

Three multi-epitope vaccine constructs, namely DdRp_MPXV (V1), DdRp_VARV (V2), and DdRp_VPXV (V3) were designed. These vaccine constructs were found to be antigenic, non-allergenic, non-toxic, and soluble with desired physicochemical properties. Protein-protein docking and interaction profiling analysis depicts a strong binding pattern between the targeted immune receptor TLR2 and the structural models of the designed vaccine constructs, and manifested a number of biochemical bonds (hydrogen bonds, salt bridges, and non-bonded contacts). State-of-the-art all-atoms molecular dynamics simulations revealed highly stable interactions of vaccine constructs with TLR2 at the atomic level throughout the simulations on 300 nanoseconds. Additionally, the outcome of the immune simulation analysis suggested that designed vaccines have the potential to induce protective immunity against targeted poxviruses.

CONCLUSIONS

Taken together, formulated next-generation polyvalent vaccines were found to have good efficacy against closely related poxviruses (MPXV, VARV, and VPXV) as demonstrated by our extensive immunoinformatics and molecular modeling evaluations; however, further experimental investigations are still needed.

摘要

背景

痘病毒属于一组大型双链 DNA 病毒,已知会导致人类、家畜动物和其他动物物种患病。正痘病毒(MPXV;以前称为猴痘)、天花病毒(VARV)和野兔痘病毒(VPXV)是痘病毒科正痘病毒属中流行的痘病毒之一。由 MPXV 引起的正在进行的猴痘传染病大流行对全球公共卫生造成了重大影响。迄今为止,仅有限的已重新用于治疗 MPXV 和其他引起传染病的痘病毒的抗病毒药物和疫苗可用。

方法

本研究的主要目的是使用整合的免疫信息学和分子建模方法针对三种进化上封闭的痘病毒即 MPXV、VARV 和 VPXV 制定多表位疫苗。使用痘病毒的潜在疫苗靶标 DNA 依赖性 RNA 聚合酶(DdRp)来确定免疫优势 B 和 T 细胞表位,然后在原子水平上与 Toll 样受体 2 进行相互作用分析。

结果

设计了三种多表位疫苗构建体,即 DdRp_MPXV(V1)、DdRp_VARV(V2)和 DdRp_VPXV(V3)。这些疫苗构建体被发现具有抗原性、非变应原性、非毒性和可溶性,具有所需的物理化学性质。蛋白质-蛋白质对接和相互作用分析表明,靶向免疫受体 TLR2 与设计的疫苗构建体的结构模型之间存在强烈的结合模式,并表现出许多生化键(氢键、盐桥和非键接触)。最先进的全原子分子动力学模拟在 300 纳秒的模拟过程中在原子水平上揭示了疫苗构建体与 TLR2 之间高度稳定的相互作用。此外,免疫模拟分析的结果表明,设计的疫苗具有诱导针对目标痘病毒的保护性免疫的潜力。

结论

总之,通过我们广泛的免疫信息学和分子建模评估,所制定的下一代多价疫苗被发现对密切相关的痘病毒(MPXV、VARV 和 VPXV)具有良好的疗效;然而,仍需要进一步的实验研究。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验