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首页> 外文期刊>Veterinary Parasitology >Function-guided selection of midgut antigens from Ornithodoros erraticus ticks and an evaluation of their protective efficacy in rabbits
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Function-guided selection of midgut antigens from Ornithodoros erraticus ticks and an evaluation of their protective efficacy in rabbits

机译:从ornithodoros畸形的功能引导的中肠抗原的选择以及对兔子的保护效应的评估

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The identification of candidate protective antigens for the development of tick vaccines may be approached by selecting antigen candidates that play key biological functions. Tick midgut proteins that play essential functions in tick survival and disease transmission are upregulated in response to blood feeding and digestion. In this study, Ornithodoros erraticus midgut transcriptomic and proteomic data upon feeding were inspected to select functionally relevant antigens to be assessed as vaccine candidate antigens. For this, we primarily focused on proteins with relevant biological functions in key physiological processes for ticks and tick-host-pathogen interactions. Later, we used additional criteria based on overexpression after feeding, predicted antigenicity and cellular localisation, resulting in the selection of four theoretical candidates, two aquaporins (OeAQP, OeAQP1), one ABC transporter (OeABC) and one selenoprotein T (OeSEL). Rabbit vaccination with synthetic immunogenic peptides designed from the extracellular antigenic regions of the selected candidates induced humoral responses that reduced tick feeding and reproduction performance. Both AQPs and OeSEL demonstrated significant protection efficacy against the homologous species O. erraticus, but lower non-significant cross-species protection against Ornithodoros moubata. Conversely, OeABC showed no protection against the homologous species O. erraticus, but significant cross-species protection against O. moubata. These results are the first demonstration of the protective potential of argasid aquaporins, suggesting that they might be included in vaccines for the control of multiple tick species. Additionally, these results also unveiled two novel protective antigens from argasid ticks, OeABC and OeSEL, belonging to functional protein families that have never been explored as a source of vaccine candidates and are deserving of further studies. Finally, our data add value to the midgut as a protective candidate antigen source in argasids for the control of tick infestations.
机译:通过选择发挥关键生物学功能的抗原候选,可以接近用于蜱疫苗的候选保护抗原的鉴定。蜱胚胎蛋白质,在蜱存活和疾病传播中起重要作用的响应是饲养和消化的。在该研究中,检查ornithodoros畸形中霉菌转发组和蛋白质组学数据进行检查,以选择功能相关的抗原以评估为疫苗候选抗原。为此,我们主要专注于具有相关生物功能的蛋白质,以蜱和蜱菌属 - 病原体相互作用的关键生理过程。后来,我们在喂养,预测抗原性和细胞定位后基于过表达的额外标准,导致选择四个理论候选物,两个水蛋白(OEAQP,OEAQP1),一个ABC转运蛋白(OEABC)和一个硒蛋白T(Oesel)。兔疫苗接种具有由所选候选者的细胞外抗原区域设计的合成免疫原性肽诱导液体反应降低蜱喂养和再现性能。 AQP和Oesel都证明了针对同源物种O. Erratictus的显着保护效果,但对Ornithodoros Moubata的非显着交叉物种保护较低。相反,OEABC对同源物种O. Erratictus进行了不受保护,而是针对O. Moubata的重要跨物种保护。这些结果是替代替代蛋白质保护潜力的第一次证明,表明它们可能包含在疫苗中以控制多种蜱型。此外,这些结果还揭开了来自替代蜱,OEABC和Oesel的两种新型保护性抗原,属于从未被探索为疫苗候选者的源头并且值得进一步研究的功能蛋白质家族。最后,我们的数据在替代蜱虫中的争论中作为保护性候选抗原来源增加价值。

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