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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Development of a quantitative, validated Capillary electrophoresis-time of flight - mass spectrometry method with integrated high-confidence analyte identification for metabolomics.
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Development of a quantitative, validated Capillary electrophoresis-time of flight - mass spectrometry method with integrated high-confidence analyte identification for metabolomics.

机译:定量,验证的毛细管电泳-飞行时间-质谱分析方法的开发,该方法具有用于代谢组学的集成高可信度分析物鉴定功能。

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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.
机译:通过使用TOF质量分析仪的高质量准确度和定量功能,结合自动特征提取和数据库搜索,开发并验证了CE-MS方法用于负电荷代谢物的定量分析。中心碳代谢的代谢物的LOD和较低LOQ(LLOQ)分别为0.2-2和1-4 microM。该方法用于阐明在稳态和指数生长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3.4-31.3%。我们观察到野生型和突变型大肠杆菌之间代谢物丰度(尤其是柠檬酸盐循环)存在显着差异。总体而言,通过自动特征检测发现了600多个特征,从而鉴定出约150个高可信度代谢物。两种不同GC-MS方法的伴随分析不仅可以交叉验证通过各种方法获得的定量结果,而且还可以更全面地覆盖大肠杆菌代谢组。

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