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结构疫苗学、分子模拟和免疫模拟方法设计针对巨细胞病毒的多表位疫苗。

Structural vaccinology, molecular simulation and immune simulation approaches to design multi-epitopes vaccine against John Cunningham virus.

机构信息

Laboratory of Animal Research Center (LARC), Qatar University, Doha, Qatar; Center for Biotechnology and Microbiology, University of Swat, Swat, Pakistan.

Center for Biotechnology and Microbiology, University of Swat, Swat, Pakistan.

出版信息

Microb Pathog. 2024 Apr;189:106572. doi: 10.1016/j.micpath.2024.106572. Epub 2024 Feb 12.

Abstract

The JCV (John Cunningham Virus) is known to cause progressive multifocal leukoencephalopathy, a condition that results in the formation of tumors. Symptoms of this condition such as sensory defects, cognitive dysfunction, muscle weakness, homonosapobia, difficulties with coordination, and aphasia. To date, there is no specific and effective treatment to completely cure or prevent John Cunningham polyomavirus infections. Since the best way to control the disease is vaccination. In this study, the immunoinformatic tools were used to predict the high immunogenic and non-allergenic B cells, helper T cells (HTL), and cytotoxic T cells (CTL) epitopes from capsid, major capsid, and T antigen proteins of JC virus to design the highly efficient subunit vaccines. The specific immunogenic linkers were used to link together the predicted epitopes and subjected to 3D modeling by using the Robetta server. MD simulation was used to confirm that the newly constructed vaccines are stable and properly fold. Additionally, the molecular docking approach revealed that the vaccines have a strong binding affinity with human TLR-7. The codon adaptation index (CAI) and GC content values verified that the constructed vaccines would be highly expressed in E. coli pET28a (+) plasmid. The immune simulation analysis indicated that the human immune system would have a strong response to the vaccines, with a high titer of IgM and IgG antibodies being produced. In conclusion, this study will provide a pre-clinical concept to construct an effective, highly antigenic, non-allergenic, and thermostable vaccine to combat the infection of the John Cunningham virus.

摘要

JCV(约翰·坎宁安病毒)已知会导致进行性多灶性白质脑病,这是一种会导致肿瘤形成的疾病。这种疾病的症状包括感觉缺陷、认知功能障碍、肌肉无力、同性恋恐惧症、协调困难和失语症。迄今为止,还没有专门有效的治疗方法可以完全治愈或预防约翰·坎宁安多瘤病毒感染。由于控制这种疾病的最好方法是接种疫苗。在这项研究中,我们使用免疫信息学工具来预测 JC 病毒衣壳、主要衣壳和 T 抗原蛋白的高免疫原性和非变应原性 B 细胞、辅助 T 细胞 (HTL) 和细胞毒性 T 细胞 (CTL) 表位,以设计高效的亚单位疫苗。我们使用特定的免疫原性接头将预测的表位连接在一起,并使用 Robetta 服务器进行 3D 建模。MD 模拟用于确认新构建的疫苗是稳定和正确折叠的。此外,分子对接方法表明,疫苗与人 TLR-7 具有很强的结合亲和力。密码子适应指数 (CAI) 和 GC 含量值验证了构建的疫苗将在 E. coli pET28a (+) 质粒中高度表达。免疫模拟分析表明,人体免疫系统对疫苗会产生强烈的反应,产生高滴度的 IgM 和 IgG 抗体。总之,这项研究将为构建一种有效、高抗原性、非变应原性和热稳定的疫苗提供一个临床前概念,以对抗约翰·坎宁安病毒的感染。

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