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基于免疫信息学设计高免疫原性多表位亚单位疫苗以刺激针对胡宁病毒的适应性免疫反应。

Immunoinformatic based designing of highly immunogenic multi-epitope subunit vaccines to stimulate an adaptive immune response against Junin virus.

作者信息

Alissa Mohammed, Alghamdi Abdullah, Alghamdi Suad A, Suleman Muhammad

机构信息

Department of Medical Laboratory, College of Applied Medical Sciences, Prince Sattam bin Abdulaziz University, Al-Kharj, 11942, Saudi Arabia.

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

出版信息

Mol Divers. 2024 Dec 18. doi: 10.1007/s11030-024-11082-6.

Abstract

The Junin virus causes Argentine hemorrhagic fever, leading to severe complications such as high fever, malaise, muscle pain, and bleeding disorders, including hemorrhages in the skin and mucous membranes. Neurological issues like confusion, seizures, and coma can also occur. Without prompt and effective treatment, the disease can be fatal, with mortality rates reaching up to 30%. Taking serious measures is essential to mitigate the spread of the disease. Vaccination is the most effective choice to neutralize the Junin virus in the current situation. Consequently, to design the highly immunogenic and non-allergenic multi-epitope subunit vaccine against the Junin virus, we employed the immunoinformatic approach to screen the glycoprotein, nucleoprotein, and RDRP protein for potential immunogenic CTL (Cytotoxic T Lymphocyte), HTL (Helper T Lymphocyte) and B (B Lymphocyte) cell epitopes. Afterward, the predicted epitopes were subjected to 3D modeling and validation. The strong binding affinity of the constructed vaccines with the human TLR3 was confirmed through molecular docking, with scores of - 333 kcal/mol for glycoprotein, - 297 kcal/mol for nucleoprotein, - 308 kcal/mol for RDRP, and - 305 kcal/mol for combined vaccines. Additionally, the binding free energies recorded were - 63.54 kcal/mol, - 64.16 kcal/mol, - 56.81 kcal/mol, and - 51.52 kcal/mol, respectively. Furthermore, the dynamic stability, residual fluctuation, and compactness of vaccine-TLR-3 complexes were confirmed by the molecular dynamic simulation. The codon adaptation index (CAI) values and high GC content confirmed the stable expression of constructed vaccines in the pET-28a ( +) expression vector. The immune simulation analysis demonstrated that administering booster doses of the developed vaccines resulted in a notable increase in IgG, IgM, interleukins, and cytokines levels, indicating effective antigen clearance over time. In conclusion, our study provides preclinical evidence for designing a highly effective Junin virus vaccine, necessitating further in-vitro and in-vivo experiments.

摘要

胡宁病毒可引发阿根廷出血热,导致严重并发症,如高烧、身体不适、肌肉疼痛以及出血性疾病,包括皮肤和黏膜出血。还可能出现诸如意识混乱、癫痫发作和昏迷等神经问题。若不及时进行有效治疗,该疾病可能致命,死亡率高达30%。采取严格措施对于减轻疾病传播至关重要。在当前情况下,接种疫苗是中和胡宁病毒的最有效选择。因此,为设计针对胡宁病毒的高免疫原性且无过敏反应的多表位亚单位疫苗,我们采用免疫信息学方法筛选糖蛋白、核蛋白和RNA依赖的RNA聚合酶(RDRP)蛋白,以寻找潜在的免疫原性细胞毒性T淋巴细胞(CTL)、辅助性T淋巴细胞(HTL)和B淋巴细胞表位。随后,对预测的表位进行三维建模和验证。通过分子对接证实了构建的疫苗与人Toll样受体3(TLR3)具有很强的结合亲和力,糖蛋白的得分是-333千卡/摩尔,核蛋白为-297千卡/摩尔,RDRP为-308千卡/摩尔,联合疫苗为-305千卡/摩尔。此外,记录的结合自由能分别为-63.54千卡/摩尔、-64.16千卡/摩尔、-56.81千卡/摩尔和-51.52千卡/摩尔。此外,通过分子动力学模拟证实了疫苗-TLR-3复合物的动态稳定性、残余波动和紧密性。密码子适应指数(CAI)值和高GC含量证实了构建的疫苗在pET-28a(+)表达载体中能稳定表达。免疫模拟分析表明,接种加强剂量的研发疫苗会使IgG、IgM、白细胞介素和细胞因子水平显著升高,表明随着时间推移能有效清除抗原。总之,我们的研究为设计高效的胡宁病毒疫苗提供了临床前证据,需要进一步进行体外和体内实验。

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