Taymaz-Nikerel Hilal, de Mey Marjan, Ras Cor, ten Pierick Angela, Seifar Reza M, van Dam Jan C, Heijnen Joseph J, van Gulik Walter M
Department of Biotechnology, Delft University of Technology, BC Delft, The Netherlands.
Anal Biochem. 2009 Mar 1;386(1):9-19. doi: 10.1016/j.ab.2008.11.018. Epub 2008 Nov 24.
Quantitative metabolomics of microbial cultures requires well-designed sampling and quenching procedures. We successfully developed and applied a differential method to obtain a reliable set of metabolome data for Escherichia coli K12 MG1655 grown in steady-state, aerobic, glucose-limited chemostat cultures. From a rigorous analysis of the commonly applied quenching procedure based on cold aqueous methanol, it was concluded that it was not applicable because of release of a major part of the metabolites from the cells. No positive effect of buffering or increasing the ionic strength of the quenching solution was observed. Application of a differential method in principle requires metabolite measurements in total broth and filtrate for each measurement. Different methods for sampling of culture filtrate were examined, and it was found that direct filtration without cooling of the sample was the most appropriate. Analysis of culture filtrates revealed that most of the central metabolites and amino acids were present in significant amounts outside the cells. Because the turnover time of the pools of extracellular metabolites is much larger than that of the intracellular pools, the differential method should also be applicable to short-term pulse response experiments without requiring measurement of metabolites in the supernatant during the dynamic period.
微生物培养物的定量代谢组学需要精心设计的采样和淬灭程序。我们成功开发并应用了一种差异方法,以获取在稳态、好氧、葡萄糖限制恒化器培养中生长的大肠杆菌K12 MG1655的可靠代谢组数据集。通过对基于冷甲醇水溶液的常用淬灭程序进行严格分析,得出该方法不适用的结论,因为细胞中大部分代谢物会释放出来。未观察到缓冲或增加淬灭溶液离子强度的积极效果。原则上,差异方法的应用需要在每次测量时对总培养液和滤液中的代谢物进行测量。我们研究了不同的培养滤液采样方法,发现不冷却样品直接过滤是最合适的。对培养滤液的分析表明,大多数中心代谢物和氨基酸在细胞外大量存在。由于细胞外代谢物池的周转时间远大于细胞内代谢物池的周转时间,差异方法也应适用于短期脉冲响应实验,而无需在动态期测量上清液中的代谢物。