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基质辅助激光解吸/电离飞行时间质谱鉴定古菌:迈向生物体的通用鉴定

Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry identification of Archaea: towards the universal identification of living organisms.

机构信息

Unité de Recherche sur les Maladies Infectieuses et Tropicales Emergentes, Aix-Marseille Université, France.

出版信息

APMIS. 2012 Feb;120(2):85-91. doi: 10.1111/j.1600-0463.2011.02833.x. Epub 2011 Nov 11.

DOI:10.1111/j.1600-0463.2011.02833.x
PMID:22229263
Abstract

Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) identification of Archaea has been limited to some environmental extremophiles belonging to distant taxa. We developed a specific protocol for MALDI-TOF-MS identification of Archaea and applied it to seven environmental human-associated Methanobrevibacter smithii, Methanobrevibacter oralis, Methanosphaera stadtmanae, and the recently described Methanomassiliicoccus luminyensi Archaea. After mechanical lyse, we observed a unique protein profile for each organisms comprising 7-24 peaks ranging from 3,015 to 10,632 Da with a high quality score of 7.38 ± 1.26. Profiles were reproducible over successive experiments performed at 1, 2, and 3-week growth durations and unambiguously distinguished the Archaea from all of the 3,995 bacterial spectra in the Brüker database. After the incorporation of the determined profiles into a local database, archaeal isolates were blindly identified within 10 min with an identification score of 1.9-2.3. The MALDI-TOF-MS-based clustering of these archaeal organisms was consistent with their 16S rDNA sequence-based phylogeny. These data prove that MALDI-TOF-MS profiling could be used as a first-line technique for the identification of human Archaea. In complement to previous reports for animal cells, Bacteria and giant viruses, MALDI-TOF-MS therefore appears as a universal method for the identification of living unicellular and multicellular organisms.

摘要

基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)鉴定古菌一直限于属于远缘分类群的一些环境极端微生物。我们开发了一种用于 MALDI-TOF-MS 鉴定古菌的特定方案,并将其应用于 7 种环境相关的人类 Methanobrevibacter smithii、Methanobrevibacter oralis、Methanosphaera stadtmanae 和最近描述的 Methanomassiliicoccus luminyensi 古菌。在机械裂解后,我们观察到每个生物体独特的蛋白质图谱,包含 7-24 个峰,分子量范围为 3015-10632Da,质量得分高达 7.38±1.26。在 1、2 和 3 周生长时间的连续实验中,图谱具有可重复性,并且可以明确地区分古菌与 Bruker 数据库中所有 3995 个细菌图谱。在将确定的图谱纳入本地数据库后,盲法鉴定古菌分离物的鉴定评分在 1.9-2.3 之间,耗时不到 10 分钟。这些古菌的 MALDI-TOF-MS 聚类与基于 16S rDNA 序列的系统发育一致。这些数据证明 MALDI-TOF-MS 图谱分析可作为人类古菌鉴定的一线技术。除了先前对动物细胞、细菌和巨型病毒的报道外,MALDI-TOF-MS 因此似乎是鉴定单细胞和多细胞生物的通用方法。

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