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Identification of In Vivo-Expressed Immunogenic Proteins by Serological Proteome Analysis of the Bacillus anthracis Secretome▿ †

机译:炭疽芽孢杆菌分泌蛋白的血清蛋白质组学分析鉴定体内表达的免疫原性蛋白质

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摘要

In a previous comparative proteomic study of Bacillus anthracis examining the influence of the virulence plasmids and of various growth conditions on the composition of the bacterial secretome, we identified 64 abundantly expressed proteins (T. Chitlaru, O. Gat, Y. Gozlan, N. Ariel, and A. Shafferman, J. Bacteriol. 188:3551-3571, 2006). Using a battery of sera from B. anthracis-infected animals, in the present study we demonstrated that 49 of these proteins are immunogenic. Thirty-eight B. anthracis immunogens are documented in this study for the first time. The relative immunogenicities of the 49 secreted proteins appear to span a >10,000-fold range. The proteins eliciting the highest humoral response in the course of infection include, in addition to the well-established immunogens protective antigen (PA), Sap, and EA1, GroEL (BA0267), AhpC (BA0345), MntA (BA3189), HtrA (BA3660), 2,3-cyclic nucleotide diesterase (BA4346), collagen adhesin (BAS5205), an alanine amidase (BA0898), and an endopeptidase (BA1952), as well as three proteins having unknown functions (BA0796, BA0799, and BA0307). Of these 14 highly potent secreted immunogens, 11 are known to be associated with virulence and pathogenicity in B. anthracis or in other bacterial pathogens. Combining the results reported here with the results of a similar study of the membranal proteome of B. anthracis (T. Chitlaru, N. Ariel, A. Zvi, M. Lion, B. Velan, A. Shafferman, and E. Elhanany, Proteomics 4:677-691, 2004) and the results obtained in a functional genomic search for immunogens (O. Gat, H. Grosfeld, N. Ariel, I. Inbar, G. Zaide, Y. Broder, A. Zvi, T. Chitlaru, Z. Altboum, D. Stein, S. Cohen, and A. Shafferman, Infect. Immun. 74:3987-4001, 2006), we generated a list of 84 in vivo-expressed immunogens for future evaluation for vaccine development, diagnostics, and/or therapeutic intervention. In a preliminary study, the efficacies of eight immunogens following DNA immunization of guinea pigs were compared to the efficacy of a PA DNA vaccine. All eight immunogens induced specific high antibody titers comparable to the titers elicited by PA; however, unlike PA, none of them provided protection against a lethal challenge (50 50% lethal doses) of virulent B. anthracis strain Vollum spores.
机译:在以前的炭疽芽孢杆菌的比较蛋白质组学研究中,研究了毒力质粒和各种生长条件对细菌分泌组的组成的影响,我们鉴定了64种高表达蛋白(T.Chitlaru,O.Gat,Y.Gozlan,N. Ariel和A.Shafferman,J.Bacteriol.188:3551-3571,2006)。在本研究中,使用来自炭疽杆菌感染动物的一系列血清,我们证明了其中49种蛋白具有免疫原性。该研究首次记录了38种炭疽芽孢杆菌免疫原。 49种分泌蛋白的相对免疫原性似乎跨越了> 10,000倍的范围。在感染过程中引起最高体液反应的蛋白质除了公认的免疫原保护性抗原(PA),Sap和EA1外,还包括GroEL(BA0267),AhpC(BA0345),MntA(BA3189),HtrA( BA3660),2,3-环核苷酸二酯酶(BA4346),胶原粘附素(BAS5205),丙氨酸酰胺酶(BA0898)和内肽酶(BA1952)以及三种功能未知的蛋白质(BA0796,BA0799和BA0307) 。在这14种高效分泌的免疫原中,有11种与炭疽芽孢杆菌或其他细菌病原体的毒力和致病性有关。将此处报告的结果与炭疽杆菌膜蛋白质组的类似研究结果相结合(T. Chitlaru,N。Ariel,A。Zvi,M。Lion,B。Velan,A。Shafferman和E. Elhanany,蛋白质组学4:677-691,2004)和在功能基因组搜索免疫原中获得的结果(O. Gat,H. Grosfeld,N.Ariel,I.Inbar,G.Zaide,Y.Broder,A.Zvi,T (Chitlaru,Z.Altboum,D.Stein,S.Cohen,和A.Shafferman,Infect.Immun.74:3987-4001,2006),我们生成了84种体内表达的免疫原,用于疫苗开发的未来评估,诊断和/或治疗干预。在一项初步研究中,将豚鼠进行DNA免疫后的8种免疫原的功效与PA DNA疫苗的功效进行了比较。所有八种免疫原诱导的特异性高抗体滴度与PA诱导的滴度相当。但是,与PA不同的是,它们都没有针对强毒炭疽芽孢杆菌Vollum孢子的致死性攻击(50 50%致死剂量)提供保护。

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