首页> 外文OA文献 >Surfome Analysis as a Fast Track to Vaccine Discovery: IDENTIFICATION OF A NOVEL PROTECTIVE ANTIGEN FOR GROUP B STREPTOCOCCUS HYPERVIRULENT STRAIN COH1
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Surfome Analysis as a Fast Track to Vaccine Discovery: IDENTIFICATION OF A NOVEL PROTECTIVE ANTIGEN FOR GROUP B STREPTOCOCCUS HYPERVIRULENT STRAIN COH1

机译:Surfome分析作为发现疫苗的快速途径:鉴定B组链球菌高毒力菌株COH1的新型保护性抗原

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摘要

Safe recombinant vaccines, based on a small number of antigenic proteins, are emerging as the most attractive, cost-effective solution against infectious diseases. In the present work, we confirmed previous data from our laboratory showing that whole viable bacterial cell treatment with proteases followed by the identification of released peptides by mass spectrometry is the method of choice for the rapid and reliable identification of vaccine candidates in Gram-positive bacteria. When applied to the Group B Streptococcus COH1 strain, 43 surface-associated proteins were identified, including all the protective antigens described in the literature as well as a new protective antigen, the cell wall-anchored protein SAN_1485 belonging to the serine-rich repeat protein family. This strategy overcomes the difficulties so far encountered in the identification of novel vaccine candidates and speeds up the entire vaccine discovery process by reducing the number of recombinant proteins to be tested in the animal model.
机译:基于少量抗原蛋白的安全重组疫苗正在成为对抗传染病的最有吸引力,最具成本效益的解决方案。在当前工作中,我们证实了实验室的先前数据,这些数据表明,用蛋白酶对细菌进行完整的活细菌处理,然后通过质谱鉴定释放的肽是快速,可靠地鉴定革兰氏阳性细菌中候选疫苗的方法。当应用于B组链球菌COH1菌株时,鉴定出43种表面相关蛋白,包括文献中描述的所有保护性抗原以及新的保护性抗原,即富含丝氨酸的重复蛋白的细胞壁锚定蛋白SAN_1485。家庭。该策略克服了迄今为止在鉴定新型疫苗候选物中遇到的困难,并通过减少动物模型中待测试的重组蛋白的数量来加快整个疫苗发现过程。

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