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首页> 外文期刊>Journal of molecular graphics & modelling >A novel approach of virulome based reverse vaccinology for exploring and validating peptide-based vaccine candidates against the most troublesome nosocomial pathogen: Acinetobacter baumannii
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A novel approach of virulome based reverse vaccinology for exploring and validating peptide-based vaccine candidates against the most troublesome nosocomial pathogen: Acinetobacter baumannii

机译:基于毒细胞的逆向疫苗学的一种新方法,用于探索和验证肽基疫苗候选最麻烦的医院病原体:鲍曼省

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Acinetobacter baumannii is one of the major cause of nosocomial infections around the globe. The emergence of hyper-virulent strains of the pathogen greatly narrows down therapeutic options for patients infected with this red alert superbug. Development of a peptide-based vaccine can offers an alternative, attractive, and cost-effective remedy for multidrug-resistant A. baumannii associated complications. Herein, we introduced a novel virulome based Reverse Vaccinology for screening peptide based vaccine candidates against A. baumannii and its validation using a negative control. The pipeline screened "FYLNDQPVS" of polysaccharide export outer membrane protein (EpsA) and "LQNNTRRMK" of chaperone-usher pathway protein B (CsuB) as broad-spectrum peptides for induction of targeted immune responses. The 9-mer epitope of both proteins was rendered virulent, antigenic, non-allergen, and highly conserved among thirty-four completely annotated strains. Interactome examination unravels peptides protein direct and indirect interactions with biological significant pathways, essential for A. baumannii pathogenesis and survival. Protein-peptide docking aids in addition by unveiling deep binding of the epitopes in the active site of the most prevalent binding allele in the human population the DRB1*0101. Both the proteins till to date are not characterized for immunoprotective efficacy and desirable to be deciphered experimentally. The designed series of in silico filters rejected few recently reported peptide and non-peptide vaccine targets and has delivered outcomes, which we believe will enrich the existing knowledge of vaccinology against this life-threatening human pathogen. (C) 2018 Elsevier Inc. All rights reserved.
机译:Acinetobacter Baumannii是全球医院感染的主要原因之一。病原体的超毒性菌株的出现大大缩小了感染这种红色警报超级患者的治疗选择。肽基疫苗的发展可以提供替代,有吸引力和具有成本效益的多药抗性A.Baumannii相关并发症的补救措施。在此,我们介绍了一种新的基于毒细胞基的反向疫苗学,用于使用阴性对照筛选肽基疫苗候选肽及其验证。该管道筛选多糖出口外膜蛋白(EPSA)和“LQNNTRMK”的“FylndQPVs”和“LQNNTRMK”作为诱导靶向免疫应答的广谱肽。两种蛋白质的9分钟表位被致毒性,抗原,非过敏原,在三十四个完全注释的菌株中高度保守。互动术检查不起作用与生物显着途径的直接和间接相互作用,对于Baumannii发病机制和存活是必不可少的。蛋白质肽对接助剂另外,通过在人口中最普遍的结合等位基因的活性位点揭开表位的深层结合DRB1 * 0101。迄今为止迄今为止的蛋白质均不具有免疫保护效果,并且希望通过实验破译。设计系列在硅滤光器中拒绝了几个最近报告的肽和非肽疫苗靶标,并提供了结果,我们认为将丰富对这种危及生命的人类病原体的疫苗学的现有知识。 (c)2018年Elsevier Inc.保留所有权利。

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