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首页> 外文期刊>Biologicals: Journal of the International Association of Biological Standardization >Reverse-vaccinology strategy for designing T-cell epitope candidates forStaphylococcus aureus endocarditis vaccine
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Reverse-vaccinology strategy for designing T-cell epitope candidates forStaphylococcus aureus endocarditis vaccine

机译:设计金黄色葡萄球菌心内膜炎疫苗的T细胞表位候选者的反向疫苗学策略

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摘要

Staphylococcus aureus is an opportunistic pathogen causing various inflammatory diseases from skin and tissue local infections, to serious life threatening infections including endocarditis. Experimental models for endocarditis demonstrated that virulence factors of S.aureus, that are very important in infection of heart vegetations, are surface proteins which promote bacterial adherence. Until now, efforts to develop effective vaccines against S.aureus were unsuccessful, partly due to the fact that different vaccine formulations have targeted mainly B-cell immunity. Reverse vaccinology is applied here, in order to identify potential vaccine epitope candidates. The basic epitopes prediction strategy relied on detection of a common antigenic 9-mer epitope meant to be able to stimulate both the B-cell and T-cell mediated immunity. Ten surface exposed proteins were chosen for antigenicity testing. Using a web-based system, five T-cell epitopes corresponding to fibronectin binding protein A (FDFTLSNNV and YVDGYIETI), collagen adhesin (FSINYKTKI), serine-rich adhesin for platelets (LTFDSTNNT) and elastin binding protein (FAMDKSHPE) were selected as potential vaccine candidates. Epitopes sequences were found to be conserved among the different S.aureus genomes screened from NCBI GenBank. Invitro and invivo immunological tests will be performed in order to validate the suitability of the epitopes for vaccine development.
机译:金黄色葡萄球菌是机会病原体,可引起各种炎症性疾病,从皮肤和组织的局部感染到严重的威胁生命的感染(包括心内膜炎)。心内膜炎的实验模型表明,在心脏植物感染中非常重要的金黄色葡萄球菌的致病因子是促进细菌粘附的表面蛋白。迄今为止,开发针对金黄色葡萄球菌的有效疫苗的努力仍未成功,部分原因在于不同的疫苗制剂主要针对B细胞免疫。为了确定潜在的疫苗表位候选者,在这里应用了反向疫苗学。基本的表位预测策略依赖于检测共同的抗原性9-mer表位,该表位既能够刺激B细胞介导的免疫,又能刺激T细胞介导的免疫。选择了十种表面暴露的蛋白质进行抗原性测试。使用基于网络的系统,选择五个分别对应于纤连蛋白结合蛋白A(FDFTLSNNV和YVDGYIETI),胶原粘附素(FSINYKTKI),富含丝氨酸的血小板粘附素(LTFDSTNNT)和弹性蛋白结合蛋白(FAMDKSHPE)的T细胞表位候选疫苗。发现从NCBI GenBank筛选的不同金黄色葡萄球菌基因组之间的表位序列是保守的。为了验证抗原决定簇是否适合疫苗开发,将进行体外和体内免疫学测试。

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