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开发一种用于代谢组学的定量、经过验证的毛细管电泳-飞行时间质谱方法,并集成高可信度的分析物鉴定功能。

Development of a quantitative, validated capillary electrophoresis-time of flight-mass spectrometry method with integrated high-confidence analyte identification for metabolomics.

作者信息

Timischl Birgit, Dettmer Katja, Kaspar Hannelore, Thieme Marian, Oefner Peter J

机构信息

Institute of Functional Genomics, University of Regensburg, Regensburg, Germany.

出版信息

Electrophoresis. 2008 May;29(10):2203-14. doi: 10.1002/elps.200700517.

DOI:10.1002/elps.200700517
PMID:18409164
Abstract

A CE-MS method was developed and validated for the quantitative analysis of negatively charged metabolites by making use of the high mass accuracy and the quantitation capabilities of a TOF mass analyzer in combination with automated feature extraction and database search. Metabolites of the central carbon metabolism were quantified with an LOD and lower LOQ (LLOQ) of 0.2-2 and 1-4 microM, respectively. The method was used to elucidate metabolic changes in the Escherichia coli deletion mutant PntAB-UdhA that lacks nicotinamide nucleotide transhydrogenase function, under both stationary and exponential growth conditions. The reproducibility of metabolite extraction and CE-TOF-MS analysis ranged from 3.7 to 22.7 and 7.9 to 22.6%, respectively, while the biological variance was 3.4-31.3%. We observed significant differences in metabolite abundance, particularly in the citrate cycle, between wild-type and mutant E. coli. Overall, more than 600 features were found by automated feature detection, which resulted in approximately 150 high-confidence metabolite identifications. Concomitant analyses with two different GC-MS methods allowed not only crossvalidation of the quantitative results obtained by the various methods, but also led to a more comprehensive coverage of the E. coli metabolome.

摘要

开发并验证了一种CE-MS方法,该方法利用TOF质谱仪的高质量精度和定量能力,结合自动特征提取和数据库搜索,对带负电荷的代谢物进行定量分析。中心碳代谢的代谢物定量限(LOD)和更低定量限(LLOQ)分别为0.2 - 2 microM和1 - 4 microM。该方法用于阐明在稳定期和指数生长期条件下,缺乏烟酰胺核苷酸转氢酶功能的大肠杆菌缺失突变体PntAB-UdhA中的代谢变化。代谢物提取和CE-TOF-MS分析的重现性分别为3.7%至22.7%和7.9%至22.6%,而生物学差异为3.4%至31.3%。我们观察到野生型和突变型大肠杆菌之间代谢物丰度存在显著差异,特别是在柠檬酸循环中。总体而言,通过自动特征检测发现了600多个特征,这导致了大约150个高可信度的代谢物鉴定。与两种不同的GC-MS方法进行同步分析,不仅可以对各种方法获得的定量结果进行交叉验证,还能更全面地覆盖大肠杆菌代谢组。

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