Teleki Attila, Sánchez-Kopper Andrés, Takors Ralf
Institute of Biochemical Engineering, University of Stuttgart, 70569 Stuttgart, Germany.
Institute of Biochemical Engineering, University of Stuttgart, 70569 Stuttgart, Germany.
Anal Biochem. 2015 Apr 15;475:4-13. doi: 10.1016/j.ab.2015.01.002. Epub 2015 Jan 16.
Modeling of metabolic networks as part of systems metabolic engineering requires reliable quantitative experimental data of intracellular concentrations. The hydrophilic interaction liquid chromatography-electrospray ionization-tandem mass spectrometry (HILIC-ESI-MS/MS) method was used for quantitative profiling of more than 50 hydrophilic key metabolites of cellular metabolism. Without prior derivatization, sugar phosphates, organic acids, nucleotides, and amino acids were measured under alkaline and acidic mobile phase conditions with pre-optimized multiple reaction monitoring (MRM) transitions. Irrespective of the polarity mode of the acquisition method used, alkaline conditions achieved the best quantification limits and linear dynamic ranges. Fully 90% of the analyzed metabolites presented detection limits better than 0.5pmol (on column), and 70% presented 1.5-fold higher signal intensities under alkaline mobile phase conditions. The quality of the method was further demonstrated by absolute quantification of selected metabolites in intracellular extracts of Escherichia coli. In addition, quantification bias caused by matrix effects was investigated by comparison of calibration strategies: standard-based external calibration, isotope dilution, and standard addition with internal standards. Here, we recommend the use of alkaline mobile phase with polymer-based zwitterionic hydrophilic interaction chromatography (ZIC-pHILIC) as the most sensitive scenario for absolute quantification for a broad range of metabolites.
作为系统代谢工程的一部分,代谢网络建模需要可靠的细胞内浓度定量实验数据。亲水作用液相色谱-电喷雾电离-串联质谱(HILIC-ESI-MS/MS)方法用于对细胞代谢的50多种亲水性关键代谢物进行定量分析。无需预先衍生化,在碱性和酸性流动相条件下,采用预先优化的多反应监测(MRM)转换对糖磷酸盐、有机酸、核苷酸和氨基酸进行测量。无论所采用的采集方法的极性模式如何,碱性条件下均能实现最佳的定量限和线性动态范围。在分析的代谢物中,足足90%的检测限优于0.5皮摩尔(柱上),70%在碱性流动相条件下的信号强度高出1.5倍。通过对大肠杆菌细胞内提取物中选定代谢物的绝对定量,进一步证明了该方法的质量。此外,通过比较校准策略研究了基质效应引起的定量偏差:基于标准品的外标法、同位素稀释法以及加入内标的标准加入法。在此,我们推荐使用碱性流动相和基于聚合物的两性离子亲水作用色谱(ZIC-pHILIC),作为对多种代谢物进行绝对定量的最灵敏方案。