Tepper Naama, Shlomi Tomer
Department of Computer Science, Technion, Israel Institute of Technology, Haifa, Israel.
PLoS One. 2015 Jul 31;10(7):e0130213. doi: 10.1371/journal.pone.0130213. eCollection 2015.
Metabolic flux analysis (MFA) is a widely used method for quantifying intracellular metabolic fluxes. It works by feeding cells with isotopic labeled nutrients, measuring metabolite isotopic labeling, and computationally interpreting the measured labeling data to estimate flux. Tandem mass-spectrometry (MS/MS) has been shown to be useful for MFA, providing positional isotopic labeling data. Specifically, MS/MS enables the measurement of a metabolite tandem mass-isotopomer distribution, representing the abundance in which certain parent and product fragments of a metabolite have different number of labeled atoms. However, a major limitation in using MFA with MS/MS data is the lack of a computationally efficient method for simulating such isotopic labeling data. Here, we describe the tandemer approach for efficiently computing metabolite tandem mass-isotopomer distributions in a metabolic network, given an estimation of metabolic fluxes. This approach can be used by MFA to find optimal metabolic fluxes, whose induced metabolite labeling patterns match tandem mass-isotopomer distributions measured by MS/MS. The tandemer approach is applied to simulate MS/MS data in a small-scale metabolic network model of mammalian methionine metabolism and in a large-scale metabolic network model of E. coli. It is shown to significantly improve the running time by between two to three orders of magnitude compared to the state-of-the-art, cumomers approach. We expect the tandemer approach to promote broader usage of MS/MS technology in metabolic flux analysis.
代谢通量分析(MFA)是一种广泛用于量化细胞内代谢通量的方法。它通过用同位素标记的营养物质喂养细胞、测量代谢物的同位素标记,并通过计算解释测量的标记数据来估计通量。串联质谱(MS/MS)已被证明对MFA有用,可提供位置同位素标记数据。具体而言,MS/MS能够测量代谢物串联质量同位素异构体分布,该分布表示代谢物的某些母体和产物片段具有不同数量标记原子的丰度。然而,将MFA与MS/MS数据结合使用的一个主要限制是缺乏一种计算效率高的方法来模拟这种同位素标记数据。在此,我们描述了tandemer方法,该方法在给定代谢通量估计的情况下,能够在代谢网络中高效计算代谢物串联质量同位素异构体分布。MFA可以使用这种方法来找到最佳代谢通量,其诱导的代谢物标记模式与MS/MS测量的串联质量同位素异构体分布相匹配。tandemer方法被应用于模拟哺乳动物甲硫氨酸代谢的小规模代谢网络模型和大肠杆菌的大规模代谢网络模型中的MS/MS数据。结果表明,与最先进的cumomers方法相比,它的运行时间显著提高了两到三个数量级。我们期望tandemer方法能促进MS/MS技术在代谢通量分析中的更广泛应用。