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Screening of potential vaccine candidates against pathogenic Brucella spp. using compositive reverse vaccinology

机译:筛选潜在的疫苗候选患者对致病性Brucella SPP。 使用综合反向疫苗学

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摘要

Brucella spp. are Gram-negative, facultative intracellular bacteria that cause brucellosis in humans and various animals. The threat of brucellosis has increased, yet currently available live attenuated vaccines still have drawbacks. Therefore, subunit vaccines, produced using protein antigens and having the advantage of being safe, cost-effective and efficacious, are urgently needed. In this study, we used core proteome analysis and a compositive RV methodology to screen potential broad-spectrum antigens against 213 pathogenic strains of Brucella spp. with worldwide geographic distribution. Candidate proteins were scored according to six biological features: subcellular localization, antigen similarity, antigenicity, mature epitope density, virulence, and adhesion probability. In the RV analysis, a total 32 candidate antigens were picked out. Of these, three proteins were selected for assessment of immunogenicity and preliminary protection in a mouse model: outer membrane protein Omp19 (used as a positive control), type IV secretion system (T4SS) protein VirB8, and type I secretion system (T1SS) protein HlyD. These three antigens with a high degree of conservation could induce specific humoral and cellular immune responses. Omp19, VirB8 and HlyD could substantially reduce the organ bacterial load of B. abortus S19 in mice and provide varying degrees of protection. In this study, we demonstrated the effectiveness of this unique strategy for the screening of potential broad-spectrum antigens against Brucella. Further evaluation is needed to identify the levels of protection conferred by the vaccine antigens against wild-type pathogenic Brucella species challenge.
机译:布鲁氏菌SPP。是革兰氏阴性的,兼性细胞内细菌,导致人类和各种动物的布鲁氏。 Brucellosis的威胁增加,目前可用的现场减毒疫苗仍然有缺点。因此,使用蛋白质抗原产生并具有安全性,具有安全性,成本效益和有效的优点的亚基疫苗是迫切需要的。在本研究中,我们使用核心蛋白质组分析和综合RV方法来筛选潜在的广谱抗原免受213个致病菌株的Brucella SPP。随着全球地理分布。根据六种生物学特征评分候选蛋白质:亚细胞定位,抗原相似性,抗原性,成熟表位密度,毒力和粘附概率。在RV分析中,挑选了总共32个候选抗原。其中,选择三种蛋白质以评估小鼠模型中的免疫原性和初步保护:外膜蛋白OMP19(用作阳性对照),IV型分泌系统(T4SS)蛋白质virb8,以及I型分泌系统(T1SS)蛋白Hlyd。这三种具有高保护程度的抗原可诱导特定的体液和细胞免疫反应。 OMP19,VIRB8和HLYD可以大大降低小鼠中B. Abortus S19的器官细菌负荷,并提供不同程度的保护。在这项研究中,我们证明了这种独特的策略对对布鲁氏菌的潜在广谱抗原进行筛选的有效性。需要进一步评价来确定疫苗抗原对野生型病原菌菌群攻击赋予的保护水平。

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