首页> 外文期刊>Journal of international management >Epitope-Based Vaccine Designing of Nocardia asteroides Targeting the Virulence Factor Mce-Family Protein by Immunoinformatics Approach
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Epitope-Based Vaccine Designing of Nocardia asteroides Targeting the Virulence Factor Mce-Family Protein by Immunoinformatics Approach

机译:基于表位的患者疫苗设计Nocardia小行星靶向毒力因子MCE-Family蛋白的免疫信息方法

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Nocardia asteroides is the main causative agent responsible for nocardiosis disease in immunocompromised patient viz. Acquired Immunodeficiency Syndrome (AIDS), malignancy, diabetic, organ recipient and genetic disorders. The virulence factor and outer membrane protein pertains immense contribution towards the designing of epitopic vaccine and limiting the robust outbreak of diseases. While epitopic based vaccine element carrying B and T cell epitope along with adjuvant is highly immunoprophylactic in nature. Present research equips immunoinformatics to figure out the suitable epitopes for effective vaccine designing. The selected epitopes VLGSSVQTA, VNIELKPEF and VVPSNLFAV amino acids sequence are identified by HLA-DRB alleles of both MHC class (MHC-I and II) molecules. Simultaneously, these also accessible to B-cell, confirmed through the ABCPred server. Antigenic property expression is validated by the Vaxijen antigenic prediction web portal. Molecular docking between the epitopes and T cell receptor delta chain authenticate the accurate interaction between epitope and receptor with significantly low binding energy. Easy access of epitopes to immune system also be concluded as transmembrane nature of the protein verified by using of TMHMM server. Appropriate structural identity of the virulence factor Mce-family protein generated through Phyre2 server and subsequently validated by ProSA and PROCHECK program suite. The structural configuration of theses epitopes also shaped using DISTILL web server. Both the structure of epitopes and protein will contribute a significant step in designing of epitopic vaccine against N. asteroides. Therefore, such immunoinformatics based computational drive definitely provides a conspicuous impel towards the development of epitopic vaccine as a promising remedy of nocardiosis
机译:Nocardia小行星是免疫患者患者患者患者患者的主要致病剂。获得免疫缺陷综合征(艾滋病),恶性肿瘤,糖尿病,器官受体和遗传障碍。毒力因子和外膜蛋白对设计表位疫苗和限制疾病的强大爆发来涉及巨大贡献。携带B和T细胞表位以及佐剂的基于外部的疫苗元素是高度免疫激性的。目前的研究配备免疫信息,以确定有效疫苗设计的合适表位。所选表位VLGSSVQTA,VNIELKPEF和VVPSNLFAV氨基酸序列由MHC类(MHC-1和II)分子的HLA-DRB等位基因鉴定。同时,这些也可访问B-Cell,通过ABCPRED服务器确认。 vaxijen抗原预测网站门户验证抗原性能表达。表位和T细胞受体δ链之间的分子对接验证表位和受体之间的准确相互作用,具有明显低的结合能量。通过使用TMHMM服务器验证的蛋白质的跨膜性质,还可以易于进入免疫系统。通过PHYRE2服务器产生的毒力因子MCE-Family蛋白的适当结构形式,随后由ProSa和Procheck程序套件验证。使用蒸馏网服务器的表位的结构配置。表位和蛋白质的结构都将有助于针对N.Asteroides设计表位疫苗的重要一步。因此,基于免疫信息的计算驱动概念提供了针对表位疫苗的显眼驾驶,作为Nocardiosis的一个有前途的补救措施

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