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稳定同位素辅助代谢组学在细胞代谢研究中的应用。

Application of stable isotope-assisted metabolomics for cell metabolism studies.

作者信息

You Le, Zhang Baichen, Tang Yinjie J

机构信息

Department of Energy, Environmental and Chemical Engineering, Washington University, St. Louis, MO 63130, USA.

Plant Metabolomics Group, Institute of Plant Physiology and Ecology, Shanghai Institute for Biological Sciences, CAS, Shanghai 20032, China.

出版信息

Metabolites. 2014 Mar 31;4(2):142-65. doi: 10.3390/metabo4020142.

Abstract

The applications of stable isotopes in metabolomics have facilitated the study of cell metabolisms. Stable isotope-assisted metabolomics requires: (1) properly designed tracer experiments; (2) stringent sampling and quenching protocols to minimize isotopic alternations; (3) efficient metabolite separations; (4) high resolution mass spectrometry to resolve overlapping peaks and background noises; and (5) data analysis methods and databases to decipher isotopic clusters over a broad m/z range (mass-to-charge ratio). This paper overviews mass spectrometry based techniques for precise determination of metabolites and their isotopologues. It also discusses applications of isotopic approaches to track substrate utilization, identify unknown metabolites and their chemical formulas, measure metabolite concentrations, determine putative metabolic pathways, and investigate microbial community populations and their carbon assimilation patterns. In addition, 13C-metabolite fingerprinting and metabolic models can be integrated to quantify carbon fluxes (enzyme reaction rates). The fluxome, in combination with other "omics" analyses, may give systems-level insights into regulatory mechanisms underlying gene functions. More importantly, 13C-tracer experiments significantly improve the potential of low-resolution gas chromatography-mass spectrometry (GC-MS) for broad-scope metabolism studies. We foresee the isotope-assisted metabolomics to be an indispensable tool in industrial biotechnology, environmental microbiology, and medical research.

摘要

稳定同位素在代谢组学中的应用推动了细胞代谢研究。稳定同位素辅助代谢组学需要:(1)设计合理的示踪实验;(2)严格的采样和淬灭方案,以尽量减少同位素变化;(3)高效的代谢物分离;(4)高分辨率质谱,以解析重叠峰和背景噪声;(5)数据分析方法和数据库,以解读宽质量/电荷比(m/z)范围内的同位素簇。本文概述了基于质谱的精确测定代谢物及其同位素异构体的技术。还讨论了同位素方法在追踪底物利用、鉴定未知代谢物及其化学式、测量代谢物浓度、确定推定代谢途径以及研究微生物群落及其碳同化模式方面的应用。此外,13C-代谢物指纹图谱和代谢模型可整合用于量化碳通量(酶反应速率)。通量组与其他“组学”分析相结合,可能会从系统层面深入了解基因功能的调控机制。更重要的是,13C示踪实验显著提高了低分辨率气相色谱-质谱(GC-MS)用于广泛代谢研究的潜力。我们预见同位素辅助代谢组学将成为工业生物技术、环境微生物学和医学研究中不可或缺的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cb4/4101500/1be58b3a86c6/metabolites-04-00142-g001.jpg

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