Department of Pathology, Microbiology and Immunology, School of Medicine, University of South Carolina, Columbia, SC 29208, USA.
J Microbiol Methods. 2013 Mar;92(3):381-6. doi: 10.1016/j.mimet.2013.01.004. Epub 2013 Jan 12.
There have been many recent reviews published on MALDI-TOF MS (matrix assisted laser desorption/ionization time-of-flight) MS (mass spectrometry) for identification of bacteria particularly with relevance to clinical microbiology. MALDI-TOF MS is now a mature technique for bacterial identification with great promise. The purpose of this review is to put into perspective MALDI-TOF MS and other widely used mass spectrometry methods for characterization of proteins. MALDI-TOF MS is used for rapid determination of a mass pattern of proteins for bacterial characterization; these proteins are generally not identified. Alternatively after gel separation, MALDI-TOF-TOF MS-MS (tandem mass spectrometry) or on-line LC-ESI MS-MS (liquid chromatography-electrospray tandem mass spectrometry) specific protein markers can be identified and peptide sequence variation among species assessed. Unlike direct MALDI-TOF MS, sample preparation for gel separation/MALDI-TOF-TOF MS and MS-MS remains quite demanding. Specific marker proteins are readily identified. Sample preparation is quite straight-forward for LC-MS-MS. Massive amounts of information (whole proteomes) are provided but bioinformatics is complex. Chromatography and electrospray mass spectrometry instrumentation is also not widely used among microbiologists. Thus, there is a need for further development in sample preparation and instrumental development for rapid and simplified analysis. As MS-MS for microbial characterization reaches maturity, it is to be anticipated that further developments in bioinformatics will also become essential. The genome codes for all proteins that might be synthesized under certain growth conditions but only direct protein identification can prove that specific proteins or networks of proteins are actually expressed which might be of relevance in improving our understanding of bacterial pathogenesis.
近年来,已有许多关于 MALDI-TOF MS(基质辅助激光解吸/电离飞行时间)MS(质谱)用于鉴定细菌的评论发表,特别是与临床微生物学相关的细菌。MALDI-TOF MS 现在是一种成熟的细菌鉴定技术,具有很大的前景。本文的目的是从多角度看待 MALDI-TOF MS 和其他广泛用于蛋白质特征分析的质谱方法。MALDI-TOF MS 用于快速测定细菌特征的蛋白质质量图谱;这些蛋白质通常无法识别。或者,在凝胶分离后,可以使用 MALDI-TOF-TOF MS-MS(串联质谱)或在线 LC-ESI MS-MS(液相色谱-电喷雾串联质谱)鉴定特定的蛋白质标志物,并评估种间肽序列的变化。与直接 MALDI-TOF MS 不同,凝胶分离/MALDI-TOF-TOF MS-MS 和 MS-MS 的样品制备仍然非常苛刻。很容易识别特定的标记蛋白。LC-MS-MS 的样品制备非常简单。提供了大量信息(整个蛋白质组),但生物信息学非常复杂。色谱和电喷雾质谱仪器在微生物学家中也未广泛使用。因此,需要进一步开发样品制备和仪器开发,以实现快速简化的分析。随着微生物特征的 MS-MS 趋于成熟,预计生物信息学的进一步发展也将变得至关重要。基因组编码了在特定生长条件下可能合成的所有蛋白质,但只有直接的蛋白质鉴定才能证明特定蛋白质或蛋白质网络实际上得到了表达,这可能有助于我们更好地理解细菌发病机制。