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首页> 外文期刊>Journal of Microbiological Methods >The development of a matrix-assisted laser desorption/ionization mass spectrometry-based method for the protein fingerprinting and identification of Aeromonas species using whole cells
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The development of a matrix-assisted laser desorption/ionization mass spectrometry-based method for the protein fingerprinting and identification of Aeromonas species using whole cells

机译:基于基质辅助激光解吸/电离质谱的蛋白质指纹识别和全细胞气单胞菌物种鉴定方法的发展

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This report describes the development of a method to detect the waterborne pathogen Aeromonas using matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). The genus Aeromonas is one of several medically significant genera that have gained prominence due to their evolving taxonomy and controversial role in human diseases. In this study, MALDI-MS was applied to the characterization of seventeen species of Aeromonas. These seventeen species were represented by thirty-two strains, which included type, reference and clinical isolates. Intact cells from each strain were used to generate a reproducible library of protein mass spectral fingerprints or m/z signatures. Under the test conditions used, peak lists of the mass ions observed in each species revealed that three mass ions were conserved among all the seventeen species tested. These common mass ions having an average m/z of 6301, 12,160 or 12,254, and 13,450, can be potentially used as genus-specific biomarkers to identify Aeromonas in unknown samples. A dendrogram generated using the m/z signatures of all the strains tested indicated that the mass spectral data contained sufficient information to distinguish between genera, species, and strains. There are several advantages of using MALDI-MS based protein mass spectral fingerprinting of whole cells for the identification of microorganisms as well as for their differentiation at the sub-species level: (1) the capability to detect proteins, (2) high throughput, and (3) relatively simple sample preparation techniques. The accuracy and speed with which data can be obtained makes MALDI-MS a powerful tool especially suited for environmental monitoring and detection of biological hazards.
机译:该报告描述了一种使用基质辅助激光解吸/电离质谱(MALDI-MS)检测水性病原体气单胞菌的方法的开发。气单胞菌属是由于其分类学的发展和在人类疾病中的争议作用而在医学上具有重要意义的属之一。在这项研究中,MALDI-MS用于表征十七种气单胞菌。这十七种以32株为代表,其中包括类型,参考和临床分离株。来自每个菌株的完整细胞用于生成蛋白质质谱指纹图谱或m / z签名的可复制文库。在使用的测试条件下,在每个物种中观察到的质量离子的峰列表显示,在所有测试的17个物种中,三个质量离子均守恒。这些常见的质量离子的平均m / z为6301、12160或12254和13450,可潜在地用作属特异性生物标记物,以鉴定未知样品中的气单胞菌。使用所有测试菌株的m / z签名生成的树状图表明,质谱数据包含足以区分属,种和菌株的信息。将基于MALDI-MS的全细胞蛋白质质谱指纹图谱用于全细胞的微生物鉴定及其在亚种水平下的分化具有以下优点:(1)检测蛋白质的能力,(2)高通量, (3)相对简单的样品制备技术。数据获取的准确性和速度使MALDI-MS成为功能强大的工具,特别适合于环境监测和生物危害的检测。

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