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首页> 外文期刊>Journal of immunology research. >West Nile Virus Vaccine Design by T Cell Epitope Selection: In Silico Analysis of Conservation, Functional Cross-Reactivity with the Human Genome, and Population Coverage
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West Nile Virus Vaccine Design by T Cell Epitope Selection: In Silico Analysis of Conservation, Functional Cross-Reactivity with the Human Genome, and Population Coverage

机译:西尼罗河病毒疫苗设计由T细胞表位选择:在硅的保护分析中,与人类基因组的功能交叉反应性,以及人口覆盖

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West Nile Virus (WNV) causes a debilitating and life-threatening neurological disease in humans. Since its emergence in Africa 50 years ago, new strains of WNV and an expanding geographical distribution have increased public health concerns. There are no licensed therapeutics against WNV, limiting effective infection control. Vaccines represent the most efficacious and efficient medical intervention known. Epitope-based vaccines against WNV remain significantly underexploited. Here, we use a selection protocol to identify a set of conserved prevalidated immunogenic T cell epitopes comprising a putative WNV vaccine. Experimentally validated immunogenic WNV epitopes and WNV sequences were retrieved from the IEDB and West Nile Virus Variation Database. Clustering and multiple sequence alignment identified a smaller subset of representative sequences. Protein variability analysis identified evolutionarily conserved sequences, which were used to select a diverse set of immunogenic candidate T cell epitopes. Cross-reactivity and human leukocyte antigen-binding affinities were assessed to eliminate unsuitable epitope candidates. Population protection coverage (PPC) quantified individual epitopes and epitope combinations against the world population. 3 CD8+ T cell epitopes (ITYTDVLRY, TLARGFPFV, and SYHDRRWCF) and 1 CD4+ epitope (VTVNPFVSVATANAKVLI) were selected as a putative WNV vaccine, with an estimated PPC of 97.14%.
机译:西尼罗河病毒(WNV)导致人类的衰弱和危及生命的神经系统疾病。自50年前非洲出现以来,新的WNV菌株和扩大地理分布增加了公共卫生问题。没有持牌治疗剂免受WNV,限制有效的感染控制。疫苗代表最有效且高效的医疗干预。抗WNV的基于表位的疫苗仍然显着下降。这里,我们使用选择方案来识别包含推定的WNV疫苗的一组保守的潜在免疫原性T细胞表位。从IEDB和West Nile病毒变异数据库中检索实验验证的免疫原性WNV表位和WNV序列。聚类和多个序列对齐识别较小的代表序列子集。蛋白质变异性分析鉴定出进化保守的序列,用于选择多样的免疫原性候选T细胞表位。评估交叉反应性和人白细胞抗原结合亲和力以消除不适合的表位候选物。人口保护覆盖率(PPC)量化了对世界人口的个体表位和表位组合。选择3D8 + T细胞表位(Itytdvlry,TLargfpfv和Syhdrrwcf)和1cD4 +表位(VTVNPFVSVATANAKVLI)作为推定的WNV疫苗,估计PPC为97.14%。

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