Shaw Edward I, Moura Hercules, Woolfitt Adrian R, Ospina Maria, Thompson Herbert A, Barr John R
Division of Viral and Rickettsial Diseases, National Center for Infectious Diseases, National Center for Environmental Health, Centers for Disease Control and Prevention, Atlanta, Georgia 30341, USA.
Anal Chem. 2004 Jul 15;76(14):4017-22. doi: 10.1021/ac030364k.
Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) specific biomarkers have been shown to be an effective tool for identifying microorganisms. In this study, we demonstrate the feasibility of using this technique to detect the obligate intracellular bacterium Coxiella burnetii, a category B bioterrorism agent. Specific biomarkers were detected in C. burnetii Nine Mile phase I (NMI) strain purified from embryonated egg yolk sac preparations. Whole organisms were applied directly to the MALDI target. MALDI-TOF MS analysis of C. burnetii NMI grown and purified at different times and places revealed a group of unique, characteristic, and reproducible spectral markers in the mass range of 1000-25000 Da. Statistical analysis of the averaged centroided masses uncovered at least 24 peptides or biomarkers. Three biomarkers observed in the MALDI-TOF MS spectrum consistently matched proteins that had been previously described in C. burnetii, one of them being the small cell variant protein A. MALDI-TOF MS analysis of whole organisms represents a sensitive and specific option for characterizing C. burnetii isolates, especially when coupled with antigen capture techniques. The method also has potential for several applications in basic microbial research, including regulation of gene expression.
基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)特异性生物标志物已被证明是鉴定微生物的有效工具。在本研究中,我们证明了使用该技术检测专性胞内细菌伯氏考克斯体(一种B类生物恐怖主义病原体)的可行性。在从鸡胚卵黄囊制剂中纯化的伯氏考克斯体九里I相(NMI)菌株中检测到了特异性生物标志物。将完整的生物体直接应用于MALDI靶标。对在不同时间和地点培养并纯化的伯氏考克斯体NMI进行MALDI-TOF MS分析,发现在1000-25000 Da质量范围内有一组独特、特征性且可重复的光谱标记物。对平均质心质量的统计分析发现了至少24种肽或生物标志物。在MALDI-TOF MS谱图中观察到的三种生物标志物与先前在伯氏考克斯体中描述的蛋白质一致,其中一种是小细胞变体蛋白A。对完整生物体进行MALDI-TOF MS分析是表征伯氏考克斯体分离株的一种灵敏且特异的方法,尤其是与抗原捕获技术结合使用时。该方法在基础微生物研究中也有多种应用潜力,包括基因表达调控。