Research Institute of Physical-Chemical Medicine, Malaya Pirogovskaya st. 1a, Moscow 119992, Russia.
Rapid Commun Mass Spectrom. 2010 Feb;24(3):328-34. doi: 10.1002/rcm.4394.
The characteristics of matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry based investigation of extremely variable bacteria such as Helicobacter pylori were studied. H. pylori possesses a very high natural variability. Accurate tools for species identification and epidemiological characterization could help the scientific community to better understand the transmission pathways and virulence mechanisms of these bacteria. Seventeen clinical as well as two laboratory strains of H. pylori were analyzed by the MALDI Biotyper method for rapid species identification. Mass spectra collected were found containing 7-13 significant peaks per sample, and only six protein signals were identical for more than half of the strains. Four of them could be assigned to ribosomal proteins RL32, RL33, RL34, and RL36. The reproducible peak with m/z 6948 was identified as a histidine-rich metal-binding polypeptide by tandem mass spectrometry (MS/MS). In spite of the evident protein heterogeneity of H. pylori the mass spectra collected for a particular strain under several cultivations were highly reproducible. Moreover, all clinical strains were perfectly identified as H. pylori species through comparative analysis using the MALDI Biotyper software (Bruker Daltonics, Germany) by pattern matching against a database containing mass spectra from different microbial strains (n = 3287) including H. pylori 26695 and J99. The results of this study allow the conclusion that the MALDI-TOF direct bacterial profiling is suited for H. pylori identification and could be supported by mass spectra fragmentation of the observed polypeptide if necessary.
本研究旨在探讨基质辅助激光解吸电离飞行时间(MALDI-TOF)质谱技术对高度可变细菌(如幽门螺杆菌)的分析特点。幽门螺杆菌具有极高的自然变异性。准确的物种鉴定和流行病学特征工具可以帮助科学界更好地了解这些细菌的传播途径和毒力机制。本研究使用 MALDI Biotyper 方法对 17 株临床分离株和 2 株实验室分离株的幽门螺杆菌进行了快速种属鉴定。结果发现,每个样本的质谱中含有 7-13 个显著峰,只有 6 个蛋白质信号在一半以上的菌株中相同。其中 4 个可以被分配到核糖体蛋白 RL32、RL33、RL34 和 RL36。串联质谱(MS/MS)鉴定出重复出现的 m/z 为 6948 的峰为富含组氨酸的金属结合多肽。尽管幽门螺杆菌的蛋白质异质性明显,但在多次培养条件下收集的质谱具有高度重现性。此外,通过与包含来自不同微生物菌株(n = 3287)的质谱的数据库(包括 H. pylori 26695 和 J99)进行图案匹配,MALDI Biotyper 软件(德国布鲁克道尔顿公司)能够对所有临床分离株进行完美鉴定为幽门螺杆菌。本研究的结果表明,MALDI-TOF 直接细菌分析适合用于幽门螺杆菌的鉴定,如果需要,可以通过观察到的多肽的质谱裂解来支持。