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Immune-Informatic Analysis and Design of Peptide Vaccine From Multi-epitopes Against Corynebacterium pseudotuberculosis

机译:多表位抗原对假结核杆菌的免疫信息学分析与设计

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摘要

Caseous lymphadenitis (CLA) is a disease caused by Corynebacterium pseudotuberculosis bacteria that affects sheep and goats. The absence of a serologic diagnose is a factor that contributes for the disease dissemination, and due to the formation of granuloma, the treatment is very expensive. Therefore, prophylaxis is the approach with best cost-benefit relation; however, it still lacks an effective vaccine. In this sense, this work seeks to apply bioinformatic tools to design an effective vaccine against CLA, using CP40 protein as standard for the design of immunodominant epitopes, from which a total of 6 sequences were obtained, varying from 10 to 16 amino acid residues. The evaluation of different properties of the vaccines showed that the vaccine is a potent and nonallergenic antigen remaining stable in a wide range of temperatures. The initial tertiary structure of the vaccine was then predicted and a model selected. Later, the process of CP40 protein and TLR2 receptor binding was performed, presenting interaction with this receptor, which plays an important role in the activation of the immune response.
机译:干酪性淋巴结炎(CLA)是由假结核棒杆菌细菌引起的一种疾病,会影响绵羊和山羊。缺乏血清学诊断是导致疾病传播的因素,并且由于肉芽肿的形成,治疗非常昂贵。因此,预防是具有最佳成本效益关系的方法。但是,它仍然缺乏有效的疫苗。从这个意义上讲,这项工作试图利用生物信息学工具设计针对CLA的有效疫苗,使用CP40蛋白作为设计免疫优势表位的标准,从中获得总共6个序列,从10到16个氨基酸残基不等。疫苗不同特性的评估表明,该疫苗是一种有效且非过敏性的抗原,可在很宽的温度范围内保持稳定。然后预测疫苗的初始三级结构并选择模型。后来,进行了CP40蛋白和TLR2受体结合的过程,呈现了与该受体的相互作用,这在激活免疫应答中起重要作用。

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