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基于蛋白质组学的疫苗靶点注释和设计用于猴痘病毒(MPXV)的亚单位和基于 mRNA 的疫苗,以应对最近的疫情爆发。

Proteomics-based vaccine targets annotation and design of subunit and mRNA-based vaccines for Monkeypox virus (MPXV) against the recent outbreak.

机构信息

College of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, PR China.

Fatima Jinnah Medical University, Lahore, Punjab, Pakistan.

出版信息

Comput Biol Med. 2023 Jun;159:106893. doi: 10.1016/j.compbiomed.2023.106893. Epub 2023 Apr 10.

Abstract

Monkeypox Virus (MPXV) is a growing public health threat with increasing cases and fatalities globally. To date, no specific vaccine or small molecule therapeutic choices are available for the treatment of MPXV disease. In this work, we employed proteomics and structural vaccinology approaches to design mRNA and multi-epitopes-based vaccines (MVC) against MPXV. We first identified ten proteins from the whole proteome of MPXV as potential vaccine targets. We then employed structural vaccinology approaches to map potential epitopes of these proteins for B cell, cytotoxic T lymphocytes (CTL), and Helper T lymphocytes (HTL). Finally, 9 CTL, 6 B cell, and 5 HTL epitopes were joined together through suitable linkers to construct MVC (multi-epitope vaccine) and mRNA-based vaccines. Molecular docking, binding free energy calculation, and in silico cloning revealed robust interaction of the designed MVC with toll-like receptor 2 (TLR2) and efficient expression in E. Coli K12 strain. The immune simulation results revealed that the antigen titer after the injection reached to the maximum level on the 5th day and an abrupt decline in the antigen titer was observed upon the production of IgM, IgG and IgM + IgG, dendritic cells, IFN-gamma, and IL (interleukins), which suggested the potential of our designed vaccine candidate for inducing an immune response against MPXV.

摘要

猴痘病毒(MPXV)是一种日益严重的公共卫生威胁,全球病例和死亡人数不断增加。迄今为止,尚无针对 MPXV 疾病的特定疫苗或小分子治疗选择。在这项工作中,我们采用蛋白质组学和结构疫苗学方法来设计针对 MPXV 的 mRNA 和多表位疫苗(MVC)。我们首先从 MPXV 的整个蛋白质组中鉴定了十种潜在的疫苗靶标蛋白。然后,我们采用结构疫苗学方法来绘制这些蛋白的潜在 B 细胞、细胞毒性 T 淋巴细胞(CTL)和辅助性 T 淋巴细胞(HTL)表位。最后,通过合适的接头将 9 个 CTL、6 个 B 细胞和 5 个 HTL 表位连接在一起,构建了 MVC(多表位疫苗)和基于 mRNA 的疫苗。分子对接、结合自由能计算和计算机模拟克隆显示,设计的 MVC 与 Toll 样受体 2(TLR2)具有强大的相互作用,并能在大肠杆菌 K12 菌株中有效表达。免疫模拟结果表明,注射后的抗原效价在第 5 天达到最高水平,随后观察到 IgM、IgG 和 IgM+IgG、树突状细胞、IFN-γ和白细胞介素(IL)的产生导致抗原效价急剧下降,这表明我们设计的疫苗候选物有潜力诱导针对 MPXV 的免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0986/10083144/4c2ac1bca02d/ga1_lrg.jpg

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