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气相色谱-化学电离飞行时间质谱法对酵母细胞提取物中糖磷酸酯的同位素异构体分析

Isotopologue analysis of sugar phosphates in yeast cell extracts by gas chromatography chemical ionization time-of-flight mass spectrometry.

作者信息

Chu Dinh Binh, Troyer Christina, Mairinger Teresa, Ortmayr Karin, Neubauer Stefan, Koellensperger Gunda, Hann Stephan

机构信息

Division of Analytical Chemistry, Department of Chemistry, University of Natural Resources and Life Sciences, BOKU Vienna, Muthgasse 18, 1190, Vienna, Austria.

出版信息

Anal Bioanal Chem. 2015 Apr;407(10):2865-75. doi: 10.1007/s00216-015-8521-9. Epub 2015 Feb 12.

Abstract

Metabolic flux analysis is based on the measurement of isotopologue ratios. In this work, a new GC-MS-based method was introduced enabling accurate determination of isotopologue distributions of sugar phosphates in cell extracts. A GC-TOFMS procedure was developed involving a two-step online derivatization (ethoximation followed by trimethylsilylation) offering high mass resolution, high mass accuracy and the potential of retrospective data analysis typical for TOFMS. The information loss due to fragmentation intrinsic for isotopologue analysis by electron ionization could be overcome by chemical ionization with methane. A thorough optimization regarding pressure of the reaction gas, emission current, electron energy and temperature of the ion source was carried out. For a substantial panel of sugar phosphates both of the glycolysis and the pentose phosphate pathway, sensitive determination of the protonated intact molecular ions together with low abundance fragment ions was successfully achieved. The developed method was evaluated for analysis of Pichia pastoris cell extracts. The measured isotopologue ratios were in the range of 55:1-2:1. The comparison of the experimental isotopologue fractions with the theoretical fractions was excellent, revealing a maximum bias of 4.6% and an average bias of 1.4%.

摘要

代谢通量分析基于同位素异构体比率的测量。在这项工作中,引入了一种基于气相色谱 - 质谱联用(GC-MS)的新方法,能够准确测定细胞提取物中糖磷酸酯的同位素异构体分布。开发了一种气相色谱 - 飞行时间质谱(GC-TOFMS)程序,该程序涉及两步在线衍生化(乙氧基化,然后三甲基硅烷化),具有高质量分辨率、高质量准确度以及飞行时间质谱典型的回顾性数据分析潜力。通过甲烷化学电离可以克服电子电离进行同位素异构体分析时因碎片化导致的信息损失。对反应气压力、发射电流、电子能量和离子源温度进行了全面优化。对于糖酵解和磷酸戊糖途径中的大量糖磷酸酯,成功实现了对质子化完整分子离子以及低丰度碎片离子的灵敏测定。所开发的方法用于毕赤酵母细胞提取物的分析评估。测得的同位素异构体比率在55:1至2:1范围内。实验同位素异构体分数与理论分数的比较结果非常好,最大偏差为4.6%,平均偏差为1.4%。

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