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二维全二维气相色谱-飞行时间质谱数据中循环酵母代谢物的鉴定与评估

Identification and evaluation of cycling yeast metabolites in two-dimensional comprehensive gas chromatography-time-of-flight-mass spectrometry data.

作者信息

Mohler Rachel E, Tu Benjamin P, Dombek Kenneth M, Hoggard Jamin C, Young Elton T, Synovec Robert E

机构信息

University of Washington, Department of Chemistry, Box 351700, Seattle, WA 98195, USA.

出版信息

J Chromatogr A. 2008 Apr 4;1186(1-2):401-11. doi: 10.1016/j.chroma.2007.10.063. Epub 2007 Oct 25.

Abstract

A yeast metabolome exhibiting oscillatory behavior was analyzed using comprehensive two-dimensional gas chromatography-time-of-flight-mass spectrometry (GC x GC-TOF-MS) and in-house developed data analysis software methodology, referred to as a signal ratio method (S(ratio) method). In this study, 44 identified unique metabolites were found to exhibit cycling, with a depth-of-modulation amplitude greater than three. After the initial locations are found using the S(ratio) software, and identified preliminarily using ChromaTOF software, the refined mass spectra and peak volumes were subsequently obtained using parallel factor analysis (PARAFAC). The peak volumes provided by PARAFAC deconvolution provide a measurement of the cycling depth-of-modulation amplitude that is more accurate than the initial S(ratio) information (which serves as a rapid screening procedure to find the cycling metabolites while excluding peaks that do not cycle). The S(ratio) reported is a rapid method to determine the depth-of-modulation while not constraining the search to specific cycling frequencies. The phase delay of the cycling metabolites ranged widely in relation to the oxygen consumption cycling pattern.

摘要

使用全二维气相色谱-飞行时间质谱联用仪(GC×GC-TOF-MS)和内部开发的称为信号比法(S(ratio)法)的数据分析软件方法,对表现出振荡行为的酵母代谢组进行了分析。在本研究中,发现44种已鉴定的独特代谢物呈现循环变化,其调制深度幅度大于3。使用S(ratio)软件找到初始位置并使用ChromaTOF软件进行初步鉴定后,随后使用平行因子分析(PARAFAC)获得了精细的质谱图和峰面积。PARAFAC去卷积提供的峰面积给出了比初始S(ratio)信息更准确的循环调制深度幅度测量值(初始S(ratio)信息用作快速筛选程序,以找到循环代谢物,同时排除不循环的峰)。所报告的S(ratio)是一种确定调制深度的快速方法,且不将搜索限制在特定的循环频率上。循环代谢物的相位延迟相对于耗氧循环模式有很大差异。

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