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针对天然稳定同位素丰度对13C质量同位素异构体分布进行校正。

Correction of 13C mass isotopomer distributions for natural stable isotope abundance.

作者信息

Fernandez C A, Des Rosiers C, Previs S F, David F, Brunengraber H

机构信息

Department of Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Mass Spectrom. 1996 Mar;31(3):255-62. doi: 10.1002/(SICI)1096-9888(199603)31:3<255::AID-JMS290>3.0.CO;2-3.

Abstract

Metabolism of singly or multiply 13C-labeled substrates leads to the production of molecules that contain 13C atoms at various positions. Molecules differing only in the number of isotopic atoms incorporated are referred to as mass isotopomers. The distribution of mass isotopomers of many molecules can be measured by gas chromatography/ mass spectrometry after chemical derivatization. Quantification of metabolite mass isotopomer abundance resulting from biological processes necessitates correction of the measured mass isotopomer distribution of the derivatized metabolite for contributions due to naturally occurring isotopes of its elements. This correction must take into account differences in the relative natural abundance distribution of each mass isotopomer (skewing). An IBM-compatible computer program was developed which (i) calculates the natural abundance mass isotopomer distribution of unlabeled and labeled standards given the molecular formula of the derivatized molecule or fragment ion, and (ii) calculates the natural abundance mass isotopomer distribution of the singly and multiply labeled molecule or fragment via non-linear fitting to the measured mass isotopomer distribution of the unlabeled molecule or fragment. The output of this program is used to correct measured mass isotopomer distributions for contributions from natural isotope abundances and to verify measured values for theoretical consistency. Differences between predicted and measured unlabeled and 13C-labeled isotopomer distributions for hydroxamate di-t-butyl-dimethylsilyl (di-TBDMS) derivatized pyruvate were measured. The program was applied to the mass isotopomer distribution of glucose labeled from [U-13C3]glycerol and of fatty acids labeled from [U-13C6]glucose and either [2-13C2] acetate or [U-13C2]acetate. In some of these cases, the measured mass isotopomer distributions corrected by the program were different from those corrected by the classical technique. Implications of these differences including those on the calculation of glucose production due to gluconeogenesis in isolated perfused rat liver are discussed.

摘要

单标记或多标记13C底物的代谢会导致产生在不同位置含有13C原子的分子。仅在掺入的同位素原子数量上不同的分子被称为质量同位素异构体。许多分子的质量同位素异构体分布可在化学衍生后通过气相色谱/质谱法进行测量。对生物过程产生的代谢物质量同位素异构体丰度进行定量时,需要针对其元素的天然存在同位素的贡献对衍生代谢物的测量质量同位素异构体分布进行校正。这种校正必须考虑每种质量同位素异构体相对天然丰度分布的差异(偏斜)。开发了一个与IBM兼容的计算机程序,该程序(i)根据衍生化分子或碎片离子的分子式计算未标记和标记标准品的天然丰度质量同位素异构体分布,以及(ii)通过对未标记分子或碎片的测量质量同位素异构体分布进行非线性拟合,计算单标记和多标记分子或碎片的天然丰度质量同位素异构体分布。该程序的输出用于校正测量的质量同位素异构体分布中天然同位素丰度的贡献,并验证测量值的理论一致性。测量了异羟肟酸二叔丁基二甲基硅烷基(二-TBDMS)衍生化丙酮酸的预测和测量的未标记及13C标记同位素异构体分布之间的差异。该程序应用于由[U-13C3]甘油标记的葡萄糖以及由[U-13C6]葡萄糖和[2-13C2]乙酸盐或[U-13C2]乙酸盐标记的脂肪酸的质量同位素异构体分布。在其中一些情况下,该程序校正后的测量质量同位素异构体分布与经典技术校正后的不同。讨论了这些差异的影响,包括对分离灌注大鼠肝脏中糖异生导致的葡萄糖生成计算的影响。

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