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High-level heterologous expression and secretion in rapidly growing nonpathogenic mycobacteria of four major Mycobacterium tuberculosis extracellular proteins considered to be leading vaccine candidates and drug targets.

机译:在快速增长的非致病性分枝杆菌中四种主要的结核分枝杆菌胞外蛋白的高水平异源表达和分泌被认为是主要的候选疫苗和药物靶标。

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摘要

Mycobacterium tuberculosis, the primary etiologic agent of tuberculosis, is the world's leading cause of death from a single infectious agent, and new vaccines and drugs to combat it are urgently needed. The major extracellular proteins of M. tuberculosis, which are released into its phagosome in macrophages, its host cells in humans, are leading candidates for a vaccine and prime targets for new drugs. However, the development of these biologicals has been hampered by the unavailability of large quantities of recombinant extracellular proteins identical to their native counterparts. In this report, we describe the heterologous expression and secretion of four major M. tuberculosis extracellular proteins (the 30-, 32, 16-, and 23.5-kDa proteins--the first, second, third, and eighth most abundant, respectively) in rapidly growing, nonpathogenic mycobacterial species. Multiple attempts to obtain secretion of the proteins by using Escherichia coli- and Bacillus subtilis-based expression systems were unsuccessful, suggesting that high-level expression and secretion of these Mycobacterium-specific proteins require a mycobacterial host. All four recombinant proteins were stably expressed from the cloned genes' own promoters at yields that were 5- to 10-fold higher than those observed for the native proteins. The four proteins were purified to apparent homogeneity from culture filtrates by ammonium sulfate precipitation and ion-exchange and molecular sieve chromatography. The recombinant proteins were indistinguishable from their native counterparts by multiple criteria. First, N-terminal amino acid sequence determination demonstrated that processing of the leader peptides was highly accurate. Second, sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis revealed identical migration patterns. Third, mass spectrometry analysis confirmed that differences in mass were < or = 5 Da. A homolog of the M. tuberculosis 30-kDa protein was identified in M. smegmatis by means of DNA analyses and immunoscreening. This is the first time that secretion of recombinant M. tuberculosis extracellular proteins in their native form has been achieved. This study opens the door to mass production of correctly processed and secreted extracellular proteins of M. tuberculosis in a heterologous host and allows ready evaluation of their biologic and immunologic function.
机译:结核分枝杆菌是结核病的主要病原体,是世界上由单一传染病引起的主要死亡原因,因此迫切需要新的疫苗和药物来应对。结核分枝杆菌的主要细胞外蛋白在巨噬细胞中释放到吞噬体中,在人的宿主细胞中是疫苗的主要候选对象,也是新药的主要靶标。然而,由于无法获得与其天然对应物相同的大量重组细胞外蛋白而阻碍了这些生物学的发展。在本报告中,我们描述了四种主要的结核分枝杆菌胞外蛋白(30、32、16和23.5-kDa蛋白-分别是第一,第二,第三和第八个最丰富的蛋白)的异源表达和分泌。在快速增长的非致病性分枝杆菌种中。通过使用基于大肠杆菌和枯草芽孢杆菌的表达系统获得蛋白质分泌的多次尝试均未成功,这表明这些分枝杆菌特异性蛋白质的高水平表达和分泌需要分枝杆菌宿主。所有四种重组蛋白均从克隆的基因自身的启动子稳定表达,其产量比天然蛋白高5至10倍。通过硫酸铵沉淀,离子交换和分子筛层析,从培养滤液中纯化出四种蛋白质,使其具有明显的均一性。通过多种标准,重组蛋白与它们的天然对应物没有区别。首先,N端氨基酸序列测定表明前导肽的加工非常准确。其次,十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析显示出相同的迁移模式。第三,质谱分析证实质量差异小于或等于5 Da。通过DNA分析和免疫筛选在耻垢分枝杆菌中鉴定出结核分枝杆菌30-kDa蛋白的同源物。这是第一次以其天然形式分泌重组结核分枝杆菌细胞外蛋白。这项研究为在异源宿主中大量生产正确加工和分泌的结核分枝杆菌打开了大门,并允许对其生物学和免疫功能进行现成的评估。

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