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Profiling of Stable Isotope Enrichment in Specialized Metabolites Using Liquid Chromatography and Multiplexed Nonselective Collision-Induced Dissociation

机译:液相色谱和多重非选择性碰撞诱导解离色谱法分析专业代谢物中的稳定同位素

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摘要

Engineering of specialized metabolites in plants, microbes, and other organisms is hindered by significant knowledge gaps about metabolic pathways responsible for metabolite accumulation and degradation. While isotopic tracers have provided important information about metabolic fluxes in central metabolism, limitations of mass spectrometric strategies for quantifying stable isotope incorporation into both intact metabolites and specific substructures have slowed extension of these techniques to large specialized metabolites. This report describes the application of electrospray ionization with data-independent multiplexed nonselective collision induced dissociation (CID) on a time-of-flight mass spectrometer. This strategy yields quasi-simultaneous collection, on the chromatographic time scale, of mass spectra with different degrees of fragment ion formation without biases introduced by precursor mass selection or selective ion activation and provides measurements of stable isotope enrichments in intact metabolites and individual substructures. The utility and precision of these analyses is demonstrated by labeling acylsugar metabolites in glandular trichomes of tomato (Solatium lycopersicum) using ~(13)CO_2 and analyzing ~(13)C enrichments in acylsugar specialized metabolites. The high precision and avoidance of mass bias provide a promising tool for extending metabolic flux analyses to complex specialized metabolites in a wide range of organisms.
机译:有关负责代谢产物积累和降解的代谢途径的大量知识空白,阻碍了植物,微生物和其他生物体内特殊代谢产物的工程化。尽管同位素示踪剂已提供了有关中心代谢中代谢通量的重要信息,但用于定量将稳定同位素掺入完整代谢物和特定亚结构中的质谱分析方法的局限性已减慢了将这些技术扩展至大型专门代谢物的速度。该报告描述了电喷雾电离在飞行时间质谱仪上与数据无关的多重非选择性碰撞诱导解离(CID)的应用。该策略可在色谱时间尺度上获得具有不同碎片离子形成程度的质谱图的同时分析,而不会因前驱体质量选择或选择性离子活化而产生偏差,并提供完整代谢物和单个子结构中稳定同位素富集的测量结果。这些分析的实用性和准确性通过使用〜(13)CO_2标记番茄腺毛中的酰基糖代谢物并使用〜(13)CO_2分析酰基糖专门代谢物中的〜(13)C富集来证明。高精度和避免质量偏差为将代谢通量分析扩展到各种生物体中的复杂专门代谢物提供了一个有前途的工具。

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