Molloy M P, Herbert B R, Slade M B, Rabilloud T, Nouwens A S, Williams K L, Gooley A A
Department of Biological Sciences, Macquarie University, Sydney, Australia.
Eur J Biochem. 2000 May;267(10):2871-81. doi: 10.1046/j.1432-1327.2000.01296.x.
Outer membrane proteins (OMPs) of Gram-negative bacteria are key molecules that interface the cell with the environment. Traditional biochemical and genetic approaches have yielded a wealth of knowledge relating to the function of OMPs. Nonetheless, with the completion of the Escherichia coli genome sequencing project there is the opportunity to further expand our understanding of the organization, expression and function of the OMPs in this Gram-negative bacterium. In this report we describe a proteomic approach which provides a platform for parallel analysis of OMPs. We propose a rapid method for isolation of bacterial OMPs using carbonate incubation, purification and protein array by two-dimensional electrophoresis, followed by protein identification using mass spectrometry. Applying this method to examine E. coli K-12 cells grown in minimal media we identified 21 out of 26 (80%) of the predicted integral OMPs that are annotated in SWISS-PROT release 37 and predicted to separate within the range of pH 4-7 and molecular mass 10-80 kDa. Five outer membrane lipoproteins were also identified and only minor contamination by nonmembrane proteins was observed. Importantly, this research readily demonstrates that integral OMPs, commonly missing from 2D gel maps, are amenable to separation by two-dimensional electrophoresis. Two of the identified OMPs (YbiL, YeaF) were previously known only from their ORFs, and their identification confirms the cognate genes are transcribed and translated. Furthermore, we show that like the E. coli iron receptors FhuE and FhuA, the expression of YbiL is markedly increased by iron limitation, suggesting a putative role for this protein in iron transport. In an additional demonstration we show the value of parallel protein analysis to document changes in E. coli OMP expression as influenced by culture temperature.
革兰氏阴性菌的外膜蛋白(OMPs)是使细胞与外界环境相接触的关键分子。传统的生化和遗传学方法已经产生了大量与OMPs功能相关的知识。尽管如此,随着大肠杆菌基因组测序项目的完成,我们有机会进一步拓展对这种革兰氏阴性菌中OMPs的组织、表达及功能的理解。在本报告中,我们描述了一种蛋白质组学方法,该方法为OMPs的平行分析提供了一个平台。我们提出了一种快速分离细菌OMPs的方法,即通过碳酸盐孵育、二维电泳纯化和蛋白质阵列,随后使用质谱进行蛋白质鉴定。将该方法应用于检测在基本培养基中生长的大肠杆菌K-12细胞,我们鉴定出了SWISS-PROT 37版注释的26种预测整合OMPs中的21种(80%),这些OMPs预计在pH 4 - 7和分子量10 - 80 kDa范围内分离。还鉴定出了5种外膜脂蛋白,仅观察到少量非膜蛋白污染。重要的是,这项研究很容易证明,二维凝胶图谱中通常缺失的整合OMPs适合通过二维电泳进行分离。已鉴定出的两种OMPs(YbiL、YeaF)此前仅从其开放阅读框得知,它们的鉴定证实了相应基因已转录并翻译。此外,我们表明,与大肠杆菌铁受体FhuE和FhuA一样,铁限制会显著增加YbiL的表达,这表明该蛋白在铁转运中可能发挥作用。在另一个实例中,我们展示了平行蛋白质分析对于记录受培养温度影响的大肠杆菌OMP表达变化的价值。