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首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Immunoinformatics guided rational design of a next generation multi epitope based peptide (MEBP) vaccine by exploring Zika virus proteome
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Immunoinformatics guided rational design of a next generation multi epitope based peptide (MEBP) vaccine by exploring Zika virus proteome

机译:免疫信息学通过探索Zika病毒蛋白质组的下一代多表位肽(MEBP)疫苗的理性设计

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Zika virus (ZIKV) is an RNA virus that has spread through mosquito sting. Currently, no vaccine and antiviral medication available so far against ZIKV. Therefore, it has fostered a study to design MEBP vaccine enabling effective prevention against the ZIKV infection. In this study combination of immuno-informatics and molecular docking approach was used to constitute a MEBP vaccine. The ZIKV proteome was used for prediction of B-cell, T-cell (HTL & CTL) and IFN-gamma epitopes. After prediction, highly antigenic and overlapping epitopes have been shortlisted which includes 14 CTL and 11 HTL epitopes that have been linked to the final peptide through AAY and GPGPG linkers respectively. An adjuvant at the N-end of the vaccine was added to improve the immunogenicity of the vaccine through the EAAAK linker. The final construct constitutes 435 amino acids after the addition of linkers and adjuvant. The existence of B-cell and IFN-gamma epitopes affirms the humoral and cell-mediated immune responses acquired by the construct. Allergenicity, antigenicity and different physiochemical attributes of the vaccine were evaluated to assure its safety and immunogenicity profile. In fact, the construct was antigenic and non-allergenic. Docking was performed among vaccine and TLR-3 to evaluate the binding affinity and the molecular interaction. Finally, the construct was subjected to In silico cloning to confers the authenticity of its expression efficiency. However, the proposed construct need to be validate experimentally to ensure its safety and immunogenic profile.
机译:Zika病毒(ZIKV)是一种通过蚊子刺穿的RNA病毒。目前,目前没有疫苗和抗病毒药物迄今为止可获得抗锡。因此,它促进了设计MEBP疫苗的研究,从而有效地预防ZIKV感染。在该研究中,使用免疫信息和分子对接方法的组合来构成MEBP疫苗。 ZikV蛋白质组用于预测B细胞,T细胞(HTL&CTL)和IFN-γ表位。在预测之后,高抗原和重叠表位已经入围,其包括通过Aay和GPGPG接头与最终肽连接的14个CTL和11个HTL表位。加入疫苗的N-末端的佐剂以通过EAAak接头改善疫苗的免疫原性。在添加接头和佐剂后,最终构建体构成435氨基酸。 B细胞和IFN-Gamma表位的存在肯定了构建体中获得的体液和细胞介导的免疫应答。评价疫苗的过敏性,抗原性和不同的物理化学属性,以确保其安全性和免疫原性分布。事实上,构建体是抗原和非过敏性。在疫苗和TLR-3之间进行对接以评估结合亲和力和分子相互作用。最后,在硅克隆中进行构建体以赋予其表达效率的真实性。然而,所提出的构建需要通过实验验证以确保其安全性和免疫原性概况。

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