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An Artifact in LC-MS/MS Measurement of Glutamine and Glutamic Acid: In-Source Cyclization to Pyroglutamic Acid

机译:LC-MS / MS测定谷氨酰胺和谷氨酸的伪像:源内环化为焦谷氨酸

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摘要

Advances in metabolomics, particularly for research on cancer, have increased the demand for accurate, highly sensitive methods for measuring glutamine (Gln) and glutamic acid (Glu) in cell cultures and other biological samples. N-terminal Gln and Glu residues in proteins or peptides have been reported to cyclize to pyroglutamic acid (pGlu) during liquid chromatography (LC)-mass spectrometry (MS) analysis, but cyclization of free Gln and Glu to free pGlu during LC-MS analysis has not been well-characterized. Using an LC-MS/MS protocol that we developed to separate Gln, Glu, and pGlu, we found that free Gln and Glu cyclize to pGlu in the electrospray ionization source, revealing a previously uncharacterized artifact in metabolomic studies. Analysis of Gln standards over a concentration range from 0.39 to 200 μM indicated that a minimum of 33% and maximum of almost 100% of Gln was converted to pGlu in the ionization source, with the extent of conversion dependent on fragmentor voltage. We conclude that the sensitivity and accuracy of Gln, Glu, and pGlu quantitation by electrospray ionization-based mass spectrometry can be improved dramatically by using (i) chromatographic conditions that adequately separate the three metabolites, (ii) isotopic internal standards to correct for in-source pGlu formation, and (iii) user-optimized fragmentor voltage for acquisition of the MS spectra. These findings have immediate impact on metabolomics and metabolism research using LC-MS technologies.
机译:代谢组学的发展,特别是在癌症研究方面,对测量细胞培养物和其他生物样品中的谷氨酰胺(Gln)和谷氨酸(Glu)的准确,高度敏感的方法的需求不断增加。据报道,蛋白质或多肽中的N末端Gln和Glu残基在液相色谱(LC)-质谱(MS)分析过程中可环化为焦谷氨酸(pGlu),但在LC-MS过程中将游离Gln和Glu环化为游离pGlu分析的特征尚未明确。使用我们开发的用于分离Gln,Glu和pGlu的LC-MS / MS方案,我们发现游离Gln和Glu在电喷雾电离源中环化为pGlu,从而揭示了代谢组学研究中以前未表征的伪影。在0.39至200μM浓度范围内对Gln标样进行分析表明,在电离源中,最低33%的Gln和最高100%的Gln转化为pGlu,转化程度取决于碎裂电压。我们得出结论,通过使用(i)充分分离三种代谢物的色谱条件,(ii)同位素内部标准物校正,可以显着提高基于电喷雾电离质谱的Gln,Glu和pGlu定量的灵敏度和准确性。源pGlu的形成,以及(iii)用户优化的碎裂电压,用于采集MS光谱。这些发现对使用LC-MS技术的代谢组学和代谢研究具有直接影响。

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