Molecular characterization of Anaplasma ovis Msp4 protein in strains isolated from ticks in Turkey: A multi-epitope synthetic vaccine antigen design against Anaplasma ovis using immunoinformatic tools

IF 1.5 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS Biologicals Pub Date : 2024-02-01 DOI:10.1016/j.biologicals.2024.101749
Ahmet Efe Köseoğlu , Hüseyin Can , Mervenur Güvendi , Sedef Erkunt Alak , Aysu Değirmenci Döşkaya , Muhammet Karakavuk , Mert Döşkaya , Cemal Ün
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Abstract

Tick-borne pathogens increasingly threaten animal and human health as well as cause great economic loss in the livestock industry. Among these pathogens, Anaplasma ovis causing a decrease in meat and milk yield is frequently detected in sheep in many countries including Turkey. This study aimed to reveal potential vaccine candidate epitopes in Msp4 protein using sequence data from Anaplasma ovis isolates and then to design a multi-epitope protein to be used in vaccine formulations against Anaplasma ovis. For this purpose, Msp4 gene was sequenced from Anaplasma ovis isolates (n:6) detected in ticks collected from sheep in Turkey and the sequence data was compared with previous sequences from different countries in order to detect the variations of Msp4 gene/protein. Potential vaccine candidate and diagnostic epitopes were predicted using various immunoinformatics tools. Among the discovered vaccine candidate epitopes, antigenic and conserved were selected, and then a multi-epitope protein was designed. The designed vaccine protein was tested for the assessment of TLR-2, IgG, and IFN-g responses by molecular docking and immune simulation analyses. Among the discovered epitopes, EVASEGSGVM and YQFTPEISLV epitopes with properties of high antigenicity, non-allergenicity, and non-toxicity were proposed to be used for Anaplasma ovis in further serodiagnostic and vaccine studies.

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从土耳其蜱虫中分离出的弓形虫 Msp4 蛋白的分子特征:利用免疫形式化工具设计多表位合成疫苗抗原以预防猫疟原虫感染
蜱传病原体越来越多地威胁着动物和人类的健康,并给畜牧业造成巨大的经济损失。在这些病原体中,包括土耳其在内的许多国家经常在绵羊身上发现会导致产肉量和产奶量下降的弓形虫。本研究旨在利用从猫疽分离物中获得的序列数据,揭示 Msp4 蛋白中潜在的候选疫苗表位,然后设计一种多表位蛋白,用于预防猫疽的疫苗配方。为此,对从土耳其绵羊身上采集的蜱虫中检测到的羱羊疟原虫分离物(n:6)的 Msp4 基因进行了测序,并将测序数据与之前来自不同国家的序列进行了比较,以检测 Msp4 基因/蛋白的变异。利用各种免疫信息学工具预测了潜在的候选疫苗表位和诊断表位。在已发现的候选疫苗表位中,筛选出抗原性和保守的表位,然后设计出多表位蛋白。通过分子对接和免疫模拟分析,对设计的疫苗蛋白进行了 TLR-2、IgG 和 IFN-g 反应评估测试。在已发现的表位中,EVASEGSGVM 和 YQFTPEISLV 表位具有高抗原性、非致敏性和无毒性等特性,建议在进一步的血清诊断和疫苗研究中用于猫疟原虫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biologicals
Biologicals 生物-生化研究方法
CiteScore
3.70
自引率
0.00%
发文量
39
审稿时长
48 days
期刊介绍: Biologicals provides a modern and multidisciplinary international forum for news, debate, and original research on all aspects of biologicals used in human and veterinary medicine. The journal publishes original papers, reviews, and letters relevant to the development, production, quality control, and standardization of biological derived from both novel and established biotechnologies. Special issues are produced to reflect topics of particular international interest and concern.Three types of papers are welcome: original research reports, short papers, and review articles. The journal will also publish comments and letters to the editor, book reviews, meeting reports and information on regulatory issues.
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