Division of High-risk Pathogen Research, Korea National Institute of Health, Chungbuk, Republic of Korea; School of Life Sciences and Biotechnology, Korea University, Seoul, Republic of Korea.
Proteomics. 2014 Jan;14(1):93-104. doi: 10.1002/pmic.201200495.
Anthrax is caused by the spore-forming bacterium Bacillus anthracis, which has been used as a weapon for bioterrorism. Although current vaccines are effective, they involve prolonged dose regimens and often cause adverse reactions. High rates of mortality associated with anthrax have made the development of an improved vaccine a top priority. To identify novel vaccine candidates, we applied an immunoproteomics approach. Using sera from convalescent guinea pigs or from human patients with anthrax, we identified 34 immunogenic proteins from the virulent B. anthracis H9401. To evaluate vaccine candidates, six were expressed as recombinant proteins and tested in vivo. Two proteins, rGBAA_0345 (alkyl hydroperoxide reductase subunit C) and rGBAA_3990 (malonyl CoA-acyl carrier protein transacylase), have afforded guinea pigs partial protection from a subsequent virulent-spore challenge. Moreover, combined vaccination with rGBAA_0345 and rPA (protective antigen) exhibited an enhanced ability to protect against anthrax mortality. Finally, we demonstrated that GBAA_0345 localizes to anthrax spores and bacilli. Our results indicate that rGBAA_0345 may be a potential component of a multivalent anthrax vaccine, as it enhances the efficacy of rPA vaccination. This is the first time that sera from patients with anthrax have been used to interrogate the proteome of virulent B. anthracis vegetative cells.
炭疽病是由形成孢子的细菌炭疽芽孢杆菌引起的,这种细菌曾被用作生物恐怖主义的武器。尽管目前的疫苗是有效的,但它们涉及长期的剂量方案,并且经常引起不良反应。与炭疽病相关的高死亡率使得开发改良疫苗成为当务之急。为了确定新的疫苗候选物,我们应用了免疫蛋白质组学方法。使用来自恢复期豚鼠或炭疽病人类患者的血清,我们从毒力 B. anthracis H9401 中鉴定出 34 种免疫原性蛋白。为了评估疫苗候选物,我们将其中 6 个作为重组蛋白进行表达,并在体内进行了测试。两种蛋白,rGBAA_0345(烷基氢过氧化物还原酶亚基 C)和 rGBAA_3990(丙二酰 CoA-酰基载体蛋白转酰酶),使豚鼠在随后的毒性孢子攻击中获得部分保护。此外,rGBAA_0345 与 rPA(保护性抗原)联合接种表现出增强的抗炭疽病死亡率的能力。最后,我们证明了 GBAA_0345 定位于炭疽孢子和杆菌。我们的结果表明,rGBAA_0345 可能是一种多价炭疽疫苗的潜在成分,因为它增强了 rPA 疫苗接种的功效。这是首次使用炭疽病患者的血清来研究毒力 B. anthracis 营养细胞的蛋白质组。