A Novel Multi-Epitope Edible Vaccine Candidate for Newcastle Disease Virus: In Silico Approach.

IF 1.6 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Iranian Journal of Biotechnology Pub Date : 2022-04-01 DOI:10.30498/ijb.2022.298822.3119
Atena Mozafari, Jafar Amani, Shahla Shahsavandi, Ali Hatef Salmanian
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引用次数: 2

Abstract

Background: Newcastle disease, is one of the most important illnesses in the aviculture industry which shows a constant threat. In this case, the vaccine could be considered an important solution to prevent and control this disease. So, the development of a new and more effective vaccine against Newcastle disease is an urgent need. Immune informatics is an important field that provides insight into the experimental procedure and could facilitate the analysis of large amounts of immunological data generated by experimental research and help to design a new vaccine candidate.

Objectives: This study is aimed at bioinformatics to investigate and select the most immunogenic and conserved epitopes derived from F and HN glycoproteins, which play a key role in pathogenesis and immunity. This strategy could cover a wide range of Newcastle disease viruses.

Materials and method: For expression in both E. coli (as an injectable recombinant vaccine candidate) and maize plant (as an edible vaccine candidate) host, two constructs were designed and analyzed separately. Furthermore, the role of LTB as an effective bio-adjuvant for general eliciting of the immune system and simultaneous expressions with those two antigens was evaluated. Hence, here a multimeric recombinant protein with the abbreviation LHN2F from the highly immunogenic part of HN, F and LTB proteins were designed. The synthetic construct was analyzed based on different bioinformatics tools.

Results: The proper immunogenicity and stability of this multimeric fusion protein have been shown by immunoinformatic methods from various servers. To confirm the function of the designed protein, the final molecule was docked to chicken MHC class I using the Pyrex-python 0.8 program. the results of Immune Epitope analysis were confirmed by the docking results between protein and receptor.

Conclusions: ‎The results of structural and immunological computational studies proposed that the protein deduced from this novel construct could act as a vaccine candidate for Newcastle disease virus‎ control and prophylactic.

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一种新型新城疫病毒多表位可食用候选疫苗:计算机方法
背景:新城疫病是禽类养殖业中最重要的病害之一,一直威胁着禽类养殖业。在这种情况下,疫苗可以被认为是预防和控制这种疾病的重要解决方案。因此,迫切需要开发一种新的、更有效的疫苗来对抗新城疫。免疫信息学是一个重要的领域,它提供了对实验过程的洞察,可以促进对实验研究产生的大量免疫学数据的分析,并有助于设计新的候选疫苗。目的:利用生物信息学的方法研究和筛选F和HN糖蛋白中最具免疫原性和保守性的表位,这些表位在F和HN糖蛋白的发病机制和免疫中起着关键作用。这一策略可以覆盖大量的新城疫病毒。材料和方法:为在大肠杆菌(可注射的重组候选疫苗)和玉米植株(可食用的候选疫苗)宿主中表达,分别设计并分析了两种构建体。此外,我们还评估了LTB作为一种有效的生物佐剂对免疫系统的全面激活以及与这两种抗原同时表达的作用。因此,本文从HN、F和LTB蛋白的高免疫原性部分设计了一种多聚体重组蛋白,其缩写为LHN2F。利用不同的生物信息学工具对合成结构进行分析。结果:通过免疫信息学方法证实该多聚融合蛋白具有良好的免疫原性和稳定性。为了确认所设计蛋白的功能,使用Pyrex-python 0.8程序将最终分子对接到鸡MHC I类。免疫表位分析结果与蛋白与受体的对接结果一致。结论:结构和免疫学计算研究结果表明,从这种新结构中推断出的蛋白可以作为控制和预防新城疫病毒的候选疫苗。
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来源期刊
Iranian Journal of Biotechnology
Iranian Journal of Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
2.60
自引率
7.70%
发文量
20
期刊介绍: Iranian Journal of Biotechnology (IJB) is published quarterly by the National Institute of Genetic Engineering and Biotechnology. IJB publishes original scientific research papers in the broad area of Biotechnology such as, Agriculture, Animal and Marine Sciences, Basic Sciences, Bioinformatics, Biosafety and Bioethics, Environment, Industry and Mining and Medical Sciences.
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