Ohashi Yoshiaki, Hirayama Akiyoshi, Ishikawa Takamasa, Nakamura Seira, Shimizu Kaori, Ueno Yuki, Tomita Masaru, Soga Tomoyoshi
Human Metabolome Technologies, Inc., Tsuruoka, Yamagata 997-0052, Japan.
Mol Biosyst. 2008 Feb;4(2):135-47. doi: 10.1039/b714176a. Epub 2007 Nov 15.
Metabolic changes in response to histidine starvation were observed in histidine-auxotrophic Escherichia coli using a capillary electrophoresis time-of-flight mass spectrometry (CE-TOFMS)-based metabolomics technique. Prior to the analysis, we prepared an E. coli metabolome list of 727 metabolites reported in the literature. An improved method for metabolite extraction was developed, which resulted in higher extraction efficiency in phosphate-rich metabolites, e.g., ATP and GTP. Based on the results, 375 charged, hydrophilic intermediates in primary metabolisms were analysed simultaneously, providing quantitative data of 198 metabolites. We confirmed that the intracellular levels of intermediates in histidine biosynthesis are rapidly accumulated in response to a drop in histidine level under histidine-starved conditions. Simultaneously, disciplined responses were observed in the glycolysis, tricarboxylic acid cycle, and amino acid and nucleotide biosynthesis pathways as regulated by amino acid starvation.
使用基于毛细管电泳飞行时间质谱(CE-TOFMS)的代谢组学技术,在组氨酸营养缺陷型大肠杆菌中观察到了对组氨酸饥饿的代谢变化。在分析之前,我们准备了一份文献报道的727种代谢物的大肠杆菌代谢组列表。开发了一种改进的代谢物提取方法,该方法在富含磷酸盐的代谢物(如ATP和GTP)中具有更高的提取效率。基于这些结果,同时分析了初级代谢中375种带电的亲水性中间体,提供了198种代谢物的定量数据。我们证实,在组氨酸饥饿条件下,随着组氨酸水平的下降,组氨酸生物合成中间体的细胞内水平迅速积累。同时,在糖酵解、三羧酸循环以及由氨基酸饥饿调节的氨基酸和核苷酸生物合成途径中观察到了有序的反应。