Guo Kevin, Li Liang
Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2 Canada.
Anal Chem. 2009 May 15;81(10):3919-32. doi: 10.1021/ac900166a.
We report a new quantitative metabolome profiling technique based on differential (12)C-/(13)C-isotope dansylation labeling of metabolites, fast liquid chromatography (LC) separation and electrospray ionization Fourier-transform ion cyclotron resonance mass spectrometry (ESI-FTICR MS) detection. An isotope reagent, (13)C-dansyl chloride, can be readily synthesized. This reagent, along with (12)C-dansyl chloride, provides a simple and robust means of labeling metabolites containing primary amine, secondary amine, or phenolic hydroxyl group(s). It is shown that dansylation labeling offers 1-3 orders of magnitude ESI signal enhancement over the underivatized counterparts. Dansylation alters the chromatographic behaviors of polar and ionic metabolites normally not retainable on a reversed phase (RP) column to an extent that they can be retained and separated by RPLC with high efficiency. There is no isotopic effect on RPLC separation of the differential isotope labeled metabolites, and (12)C-/(13)C-labeled isoforms of metabolites are coeluted and detected by MS for precise and accurate quantification and confident metabolite identification. It is demonstrated that, in the analysis of 20 amino acids, a linear response of over 2 orders of magnitude is achieved for relative metabolite quantification with an average relative standard deviation (RSD) of about 5.3% from replicate experiments. A dansylation standard compound library consisting of 121 known amines and phenols has been constructed and is proven to be useful for absolute metabolite quantification and MS-based metabolite identification in biological samples. As an example, the absolute concentrations of 93 metabolites, ranging from 30 nM to 2510 microM, can be determined from a pooled sample of human urines collected in 5 consecutive days labeled with (12)C-dansylation and spiked with the 121 (13)C-dansylated standards. Relative concentration variations of these metabolites in individual urine samples can also be monitored by mixing the (13)C-dansylated pooled urine sample with the (12)C-dansylated individual sample. With a 12 min fast LC separation combined with FTICR MS, 672 metabolites were detected in a human urine sample with each metabolite peak having a signal-to-noise ratio of greater than 20; the identities of most of the metabolites remain to be determined. This work illustrates that dansylation labeling and fast LC/FTICR MS can be a powerful technique for quantitative profiling of at least 672 metabolites in urine samples in 12 min.
我们报道了一种新的定量代谢组分析技术,该技术基于代谢物的差异(12)C-/(13)C-同位素丹磺酰化标记、快速液相色谱(LC)分离和电喷雾电离傅里叶变换离子回旋共振质谱(ESI-FTICR MS)检测。一种同位素试剂,(13)C-丹磺酰氯,可以很容易地合成。该试剂与(12)C-丹磺酰氯一起,提供了一种简单而可靠的方法来标记含有伯胺、仲胺或酚羟基的代谢物。结果表明,丹磺酰化标记比未衍生化的对应物提供了1-3个数量级的ESI信号增强。丹磺酰化改变了通常在反相(RP)柱上不可保留的极性和离子代谢物的色谱行为,使其能够通过反相液相色谱(RPLC)高效保留和分离。对于差异同位素标记的代谢物的RPLC分离没有同位素效应,并且代谢物的(12)C-/(13)C-标记异构体共洗脱并通过质谱检测,以进行精确和准确的定量以及可靠的代谢物鉴定。结果表明,在对20种氨基酸的分析中,相对代谢物定量实现了超过2个数量级的线性响应,重复实验的平均相对标准偏差(RSD)约为5.3%。已经构建了一个由121种已知胺和酚组成的丹磺酰化标准化合物库,并被证明可用于生物样品中代谢物的绝对定量和基于质谱的代谢物鉴定。例如,可以从连续5天收集的人尿液混合样品中确定93种代谢物的绝对浓度,该混合样品用(12)C-丹磺酰化标记并加入121种(13)C-丹磺酰化标准品。通过将(13)C-丹磺酰化的混合尿液样品与(12)C-丹磺酰化的个体样品混合,也可以监测这些代谢物在个体尿液样品中的相对浓度变化。通过12分钟的快速LC分离结合FTICR MS,在一份人尿液样品中检测到672种代谢物,每个代谢物峰的信噪比大于20;大多数代谢物的身份仍有待确定。这项工作表明,丹磺酰化标记和快速LC/FTICR MS可以成为一种强大的技术,用于在12分钟内对尿液样品中的至少672种代谢物进行定量分析。