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Immunoreactive Coxiella burnetii Nine Mile proteins separated by 2D electrophoresis and identified by tandem mass spectrometry

机译:免疫反应性Coxiella Burnetii九英里蛋白质分离2D电泳,并通过串联质谱鉴定

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摘要

Coxiella burnetii is a Gram-negative obligate intracellular pathogen and the causative agent of Q fever in humans. Q fever causes acute flu-like symptoms and may develop into a chronic disease leading to endocarditis. Its potential as a bioweapon has led to its classification as a category B select agent. An effective inactivated whole-cell vaccine (WCV) currently exists but causes severe granulomatous/necrotizing reactions in individuals with prior exposure, and is not licensed for use in most countries. Current efforts to reduce or eliminate the deleterious reactions associated with WCVs have focused on identifying potential subunit vaccine candidates. Both humoral and T cell-mediated responses are required for protection in animal models. In this study, nine novel immunogenic C. burnetii proteins were identified in extracted whole-cell lysates using 2D electrophoresis, immunoblotting with immune guinea pig sera, and tandem MS. The immunogenic C. burnetii proteins elicited antigen-specific IgG in guinea pigs vaccinated with whole-cell killed Nine Mile phase I vaccine, suggesting a T cell-dependent response. Eleven additional proteins previously shown to react with immune human sera were also antigenic in guinea pigs, showing the relevance of the guinea pig immunization model for antigen discovery. The antigens described here warrant further investigation to validate their potential use as subunit vaccine candidates.
机译:Coxiella Burnetii是一种革兰氏阴性难以造成的细胞内病原体和人类Q发烧的致病剂。 Q发烧会导致急性流感样症状,可能发展成慢性疾病,导致心内膜炎。它作为BiOWeapon的潜力导致其作为B类别代理的分类。目前存在有效的灭活的全细胞疫苗(WCV),但导致患有先前暴露的个体中严重的肉芽肿/坏死反应,并在大多数国家没有使用许可。目前努力减少或消除与WCV相关的有害反应的重点是鉴定潜在的亚基疫苗候选者。体液和T细胞介导的响应都是在动物模型中保护所必需的。在本研究中,使用2D电泳,用免疫豚鼠血清免疫引起的免疫引起的免疫印迹,在提取的全细胞裂解物中鉴定了九种新型免疫原性C.伯类蛋白。免疫原性C.Burnetii蛋白引发抗原特异性IgG在用全细胞造成的九英里阶段I疫苗接种疫苗的豚鼠中,表明T细胞依赖性反应。先前表现出与免疫人血清反应的11个另外的蛋白质也是豚鼠中的抗原性,显示出豚鼠免疫模型对抗原发现的相关性。这里描述的抗原需要进一步调查,以验证其作为亚基疫苗候选者的潜在用途。

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