Institute of Chemical Technologies and Analytics, Vienna University of Technology, Getreidemarkt 9/164-IAC, 1060 Vienna, Austria.
Anal Bioanal Chem. 2009 Nov;395(5):1373-83. doi: 10.1007/s00216-009-3067-3. Epub 2009 Aug 30.
Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) has been proved to be a powerful tool for the identification and characterization of microorganisms based on their surface peptide/protein pattern. Because of the complexity of microorganisms, there are no standardized protocols to acquire reproducible peptide/protein profiles for a broad range of microorganisms and for fungi in particular. Small variations during MALDI MS sample preparation affect the quality of mass spectra quite often. In this study, we were aiming to develop a sample preparation method for the analysis of colored, a quite often observed phenomenon, and mycotoxin-producing Fusarium conidia spores using MALDI-TOF MS. Different washing solvent systems for light- and deep-colored (from slightly orange to red-brown) conidia spores and connected sample deposition techniques were evaluated based on MS reproducibility and number and intensities of peaks. As a method of choice for generation of reproducible and characteristic MALDI-TOF mass spectra, the use of a washing process for colored Fusarium conidia spores with acetonitrile/0.5% formic acid (7/3) was found and subsequently combined with two-layer volume technique (spores/matrix (ferulic acid) solution was deposited onto a MALDI target, and after solvent evaporation, a second matrix layer was deposited). With the application of this sample preparation method, for deep-colored Fusarium species, 19 abundant molecular ions in the m/z range 2,000-10,000 were always detected with an S/N ratio of 3:1 or better. Finally this optimized sample preparation for the first time provided mass spectrometric fingerprints of strongly colored Fusarium conidia spores resulting in the possibility of differentiation of such spores at the species level.
基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)已被证明是一种强大的工具,可根据微生物的表面肽/蛋白质模式对其进行鉴定和表征。由于微生物的复杂性,目前还没有标准化的方案可以获取广泛的微生物,尤其是真菌的可重复的肽/蛋白质图谱。MALDI MS 样品制备过程中的微小变化常常会影响质谱的质量。在这项研究中,我们旨在开发一种用于分析有色(一种经常观察到的现象)和产毒素镰刀菌孢子的 MALDI-TOF MS 样品制备方法。基于 MS 重现性以及峰的数量和强度,评估了用于浅色和深色(从略带橙色到红棕色)孢子的不同洗涤溶剂系统以及相关的样品沉积技术。作为生成可重复且具有特征性 MALDI-TOF 质谱的方法选择,发现了使用乙腈/0.5%甲酸(7/3)对有色镰刀菌孢子进行洗涤的方法,并随后将其与双层体积技术(孢子/基质(阿魏酸)溶液沉积到 MALDI 靶上,然后蒸发溶剂,再沉积第二层基质)相结合。使用该样品制备方法,对于深色镰刀菌属物种,可以始终在 2,000-10,000 m/z 范围内检测到 19 个丰富的分子离子,信噪比为 3:1 或更高。最后,该优化的样品制备方法首次提供了强染色镰刀菌孢子的质谱指纹图谱,从而有可能在种水平上对这些孢子进行区分。