Takahashi Hiroki, Kai Kosuke, Shinbo Yoko, Tanaka Kenichi, Ohta Daisaku, Oshima Taku, Altaf-Ul-Amin Md, Kurokawa Ken, Ogasawara Naotake, Kanaya Shigehiko
Graduate School of Information Sciences, Nara Institute of Science and Technology, 8916-5, Takayama, Ikoma, Nara, 630-0192, Japan.
Anal Bioanal Chem. 2008 Aug;391(8):2769-82. doi: 10.1007/s00216-008-2195-5. Epub 2008 Jun 16.
Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR/MS) is the best MS technology for obtaining exact mass measurements owing to its great resolution and accuracy, and several outstanding FT-ICR/MS-based metabolomics approaches have been reported. A reliable annotation scheme is needed to deal with direct-infusion FT-ICR/MS metabolic profiling. Correlation analyses can help us not only uncover relations between the ions but also annotate the ions originated from identical metabolites (metabolite derivative ions). In the present study, we propose a procedure for metabolite annotation on direct-infusion FT-ICR/MS by taking into consideration the classification of metabolite-derived ions using correlation analyses. Integrated analysis based on information of isotope relations, fragmentation patterns by MS/MS analysis, co-occurring metabolites, and database searches (KNApSAcK and KEGG) can make it possible to annotate ions as metabolites and estimate cellular conditions based on metabolite composition. A total of 220 detected ions were classified into 174 metabolite derivative groups and 72 ions were assigned to candidate metabolites in the present work. Finally, metabolic profiling has been able to distinguish between the growth stages with the aid of PCA. The constructed model using PLS regression for OD(600) values as a function of metabolic profiles is very useful for identifying to what degree the ions contribute to the growth stages. Ten phospholipids which largely influence the constructed model are highly abundant in the cells. Our analyses reveal that global modification of those phospholipids occurs as E. coli enters the stationary phase. Thus, the integrated approach involving correlation analyses, metabolic profiling, and database searching is efficient for high-throughput metabolomics.
傅里叶变换离子回旋共振质谱(FT-ICR/MS)因其高分辨率和高精度,是获取精确质量测量的最佳质谱技术,并且已经报道了几种基于FT-ICR/MS的出色代谢组学方法。需要一种可靠的注释方案来处理直接进样FT-ICR/MS代谢谱。相关性分析不仅可以帮助我们揭示离子之间的关系,还可以注释源自相同代谢物的离子(代谢物衍生离子)。在本研究中,我们提出了一种通过相关性分析考虑代谢物衍生离子分类的直接进样FT-ICR/MS代谢物注释程序。基于同位素关系信息、串联质谱分析的碎片模式、共现代谢物和数据库搜索(KNApSAcK和KEGG)的综合分析,可以将离子注释为代谢物,并根据代谢物组成估计细胞状态。在本工作中,总共220个检测到的离子被分类为174个代谢物衍生组,72个离子被指定为候选代谢物。最后,代谢谱能够借助主成分分析区分生长阶段。使用偏最小二乘回归构建的以代谢谱为函数的OD(600)值模型对于确定离子对生长阶段的贡献程度非常有用。对构建模型有很大影响的十种磷脂在细胞中含量很高。我们的分析表明,随着大肠杆菌进入稳定期,这些磷脂会发生整体修饰。因此,涉及相关性分析、代谢谱分析和数据库搜索的综合方法对于高通量代谢组学是有效的。