首页> 美国卫生研究院文献>Infection and Immunity >Identification and Characterization of Mycobacterial Proteins Differentially Expressed under Standing and Shaking Culture Conditions Including Rv2623 from a Novel Class of Putative ATP-Binding Proteins
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Identification and Characterization of Mycobacterial Proteins Differentially Expressed under Standing and Shaking Culture Conditions Including Rv2623 from a Novel Class of Putative ATP-Binding Proteins

机译:站立和摇动培养条件下差异表达的分枝杆菌蛋白的鉴定和表征包括来自一类新型假定ATP结合蛋白的Rv2623

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摘要

The environmental signals that affect gene regulation in Mycobacterium tuberculosis remain largely unknown despite their importance to tuberculosis pathogenesis. Other work has shown that several promoters, including acr (also known as hspX) (α-crystallin homolog), are upregulated in shallow standing cultures compared with constantly shaking cultures. Each of these promoters is also induced to a similar extent within macrophages. The present study used two-dimensional gel electrophoresis and mass spectrometry to further characterize differences in mycobacterial protein expression during growth under standing and shaking culture conditions. Metabolic labeling of M. bovis BCG showed that at least 45 proteins were differentially expressed under standing and shaking culture conditions. Rv2623, CysA2-CysA3, Gap, and Acr were identified from each of four spots or gel bands that were specifically increased in bacteria from standing cultures. An additional standing-induced spot contained two comigrating proteins, GlcB and KatG. The greatest induction was observed with Rv2623, a 32-kDa protein of unknown function that was strongly expressed under standing conditions and absent in shaking cultures. Analysis using PROBE, a multiple sequence alignment and database mining tool, classified M. tuberculosis Rv2623 as a member of a novel class of ATP-binding proteins that may be involved in M. tuberculosis's response to environmental signals. These studies demonstrate the power of combined proteomic and computational approaches and demonstrate that subtle differences in bacterial culture conditions may have important implications for the study of gene expression in mycobacteria.
机译:尽管对结核分枝杆菌的发病机理很重要,但影响结核分枝杆菌基因调控的环境信号仍然未知。其他工作表明,与持续摇动培养相比,浅启动培养中的几个启动子(包括acr(也称为hspX)(α-晶状蛋白同系物))被上调。这些启动子中的每一个在巨噬细胞中也被诱导到相似的程度。本研究使用二维凝胶电泳和质谱技术来进一步表征在站立和摇动培养条件下生长过程中分枝杆菌蛋白表达的差异。牛分枝杆菌BCG的代谢标记显示,在静置和摇动培养条件下,至少有45种蛋白质差异表达。 Rv2623,CysA2-CysA3,Gap和Acr是从四个斑点或凝胶带中鉴定出的,这些斑点或凝胶带在静置培养的细菌中特异性增加。另外一个站立诱导的斑点包含两个迁移蛋白,GlcB和KatG。用Rv2623观察到了最大的诱导,Rv2623是一种未知功能的32 kDa蛋白,在静置条件下会强烈表达,在摇动培养中则不存在。使用多序列比对和数据库挖掘工具PROBE进行的分析将结核分枝杆菌Rv2623归类为可能与结核分枝杆菌对环境信号的反应有关的新型ATP结合蛋白类的成员。这些研究证明了蛋白质组学和计算方法相结合的能力,并表明细菌培养条件的细微差异可能对分枝杆菌基因表达的研究具有重要意义。

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