Skeiky Y A, Lodes M J, Guderian J A, Mohamath R, Bement T, Alderson M R, Reed S G
Corixa Corporation, Seattle, Washington 98104, USA.
Infect Immun. 1999 Aug;67(8):3998-4007. doi: 10.1128/IAI.67.8.3998-4007.1999.
Culture filtrate proteins (CFP) of Mycobacterium tuberculosis have been shown to contain immunogenic components that elicit at least partial protective immunity against Mycobacterium infection. To clone genes encoding some of the immunogenic proteins, we made a high-titer rabbit anti-CFP serum and used it to screen an M. tuberculosis genomic expression library in Escherichia coli. In this paper, we describe the molecular cloning of two new protein components of CFP and identified them as members of the serine protease gene family. Their open reading frames contain N-terminal hydrophobic secretory signals consistent with their detection in CFP. The predicted molecular masses of the mature, fully processed forms of both antigens are approximately 32 kDa, in agreement with their observed sizes on immunoblots of CFP probed with polyclonal rabbit antisera made to the recombinant proteins. Thus, these proteins have been designated MTB32A and MTB32B. Interestingly, and despite 66% amino acid sequence homology between the two proteins, polyclonal rabbit antisera made to each of the recombinant proteins were found to be specific for the respective immunizing antigens. The recombinant proteins were also evaluated in in vitro assays with donor peripheral blood mononuclear cells (PBMC) from healthy purified protein derivative (PPD)-positive individuals of diverse ethnic backgrounds. MTB32A but not MTB32B stimulated PBMC from healthy PPD-positive donors but not from PPD-negative donors to proliferate and secrete gamma interferon. MTB32A is encoded by a single-copy gene which is present in both virulent and avirulent strains of the M. tuberculosis complex and the BCG strain of Mycobacterium bovis but absent in the environmental mycobacterial species tested. In addition, nucleotide sequence comparison of mtb32a of the avirulent H37Ra strain and the virulent Erdman strain, as well as with the corresponding sequences (identified in the databases) of strain H37Rv and the clinical isolate CSU93, revealed 100% identity. MTB32A, therefore, represents a candidate for inclusion in subunit vaccine development. Finally, the possible role of MTB32 serine proteases as a virulence factor(s) during Mycobacterium spp. infection is discussed.
结核分枝杆菌的培养滤液蛋白(CFP)已被证明含有免疫原性成分,这些成分可引发至少部分针对分枝杆菌感染的保护性免疫。为了克隆编码一些免疫原性蛋白的基因,我们制备了高效价的兔抗CFP血清,并用它来筛选大肠杆菌中的结核分枝杆菌基因组表达文库。在本文中,我们描述了CFP的两个新蛋白质成分的分子克隆,并将它们鉴定为丝氨酸蛋白酶基因家族的成员。它们的开放阅读框包含N端疏水分泌信号,这与它们在CFP中的检测结果一致。两种抗原成熟、完全加工形式的预测分子量约为32 kDa,这与用针对重组蛋白制备的多克隆兔抗血清探测CFP免疫印迹时观察到的大小一致。因此,这些蛋白质被命名为MTB32A和MTB32B。有趣的是,尽管这两种蛋白质之间有66%的氨基酸序列同源性,但发现用每种重组蛋白制备的多克隆兔抗血清对各自的免疫抗原具有特异性。还使用来自不同种族背景的健康纯化蛋白衍生物(PPD)阳性个体的供体外周血单个核细胞(PBMC)进行了体外试验,对重组蛋白进行了评估。MTB32A而非MTB32B刺激健康PPD阳性供体的PBMC增殖并分泌γ干扰素,但不刺激PPD阴性供体的PBMC。MTB32A由一个单拷贝基因编码,该基因存在于结核分枝杆菌复合群的有毒和无毒菌株以及牛分枝杆菌卡介苗菌株中,但在所测试的环境分枝杆菌物种中不存在。此外,无毒H37Ra菌株和有毒Erdman菌株的mtb32a的核苷酸序列比较,以及与菌株H37Rv和临床分离株CSU93的相应序列(在数据库中鉴定)的比较,显示100%的同一性。因此,MTB32A代表了一种可纳入亚单位疫苗开发的候选物。最后,讨论了MTB32丝氨酸蛋白酶在分枝杆菌属感染期间作为毒力因子的可能作用。