Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory , Richland, Washington 99354, United States.
Anal Chem. 2016 Dec 20;88(24):12411-12418. doi: 10.1021/acs.analchem.6b03724. Epub 2016 Dec 6.
Identification of metabolites in complex mixtures represents a key step in metabolomics. A new strategy is introduced, which is implemented in a new public web server, COLMARm, that permits the coanalysis of up to three two-dimensional (2D) NMR spectra, namely, C-H HSQC (heteronuclear single quantum coherence spectroscopy), H-H TOCSY (total correlation spectroscopy), and C-H HSQC-TOCSY, for the comprehensive, accurate, and efficient performance of this task. The highly versatile and interactive nature of COLMARm permits its application to a wide range of metabolomics samples independent of the magnetic field. Database query is performed using the HSQC spectrum, and the top metabolite hits are then validated against the TOCSY-type experiment(s) by superimposing the expected cross-peaks on the mixture spectrum. In this way the user can directly accept or reject candidate metabolites by taking advantage of the complementary spectral information offered by these experiments and their different sensitivities. The power of COLMARm is demonstrated for a human serum sample uncovering the existence of 14 metabolites that hitherto were not identified by NMR.
在代谢组学中,鉴定复杂混合物中的代谢物是关键步骤。本文引入了一种新策略,并在一个新的公共网络服务器 COLMARm 中实现,该服务器最多可以同时分析三个二维(2D)NMR 谱,即 C-H HSQC(异核单量子相干谱)、H-H TOCSY(全相关谱)和 C-H HSQC-TOCSY,以全面、准确、高效地完成这项任务。COLMARm 具有高度通用和交互的特点,可应用于广泛的代谢组学样本,而不受磁场的影响。数据库查询是使用 HSQC 谱进行的,然后通过将预期的交叉峰叠加到混合物谱上来验证 TOCSY 类型实验(多个实验)中的顶级代谢物命中。通过利用这些实验及其不同灵敏度提供的互补光谱信息,用户可以直接接受或拒绝候选代谢物。本文通过对人血清样本的分析,证明了 COLMARm 的强大功能,揭示了 14 种以前未通过 NMR 鉴定的代谢物的存在。