Lorkiewicz Pawel, Higashi Richard M, Lane Andrew N, Fan Teresa W-M
Department of Chemistry, University of Louisville, 2210 S. Brook St, Rm 348 John W. Shumaker Research Building, Louisville, KY 40292, USA.
Metabolomics. 2012;8(5):930-939. doi: 10.1007/s11306-011-0388-y. Epub 2011 Dec 9.
Fourier transform-ion cyclotron resonance-mass spectrometry (FTICR-MS) is capable of acquiring unmatched quality of isotopologue data for stable isotope resolved metabolomics (SIRM). This capability drives the need for a continuous ion introduction for obtaining optimal isotope ratios. Here we report the simultaneous analysis of mono and dinucleotides from crude polar extracts by FTICR-MS by adapting an ion-pairing sample preparation method for LC-MS analysis. This involves a rapid cleanup of extracted nucleotides on pipet tips containing a C(18) stationary phase, which enabled global analysis of nucleotides and their (13)C isotopologues at nanomolar concentrations by direct infusion nanoelectrospray FTICR-MS with 5 minutes of data acquisition. The resolution and mass accuracy enabled computer-assisted unambiguous assignment of most nucleotide species, including all phosphorylated forms of the adenine, guanine, uracil and cytosine nucleotides, NAD(+), NADH, NADP(+), NADPH, cyclic nucleotides, several UDP-hexoses, and all their (13)C isotopologues. The method was applied to a SIRM study on human lung adenocarcinoma A549 cells grown in [U-(13)C] glucose with or without the anti-cancer agent methylseleninic acid. At m/z resolving power of 400,000, (13)C-isotopologues of nucleotides were fully resolved from all other elemental isotopologues, thus allowing their (13)C fractional enrichment to be accurately determined. The method achieves both high sample and high information throughput analysis of nucleotides for metabolic pathway reconstruction in SIRM investigations.
傅里叶变换离子回旋共振质谱(FTICR-MS)能够获取用于稳定同位素分辨代谢组学(SIRM)的无与伦比的同位素异构体数据质量。这种能力推动了对连续离子引入的需求,以获得最佳同位素比率。在此,我们报告了通过采用用于液相色谱-质谱分析的离子对样品制备方法,利用FTICR-MS对粗极性提取物中的单核苷酸和二核苷酸进行同时分析。这涉及在含有C(18)固定相的移液器吸头上来快速净化提取的核苷酸,通过直接进样纳升电喷雾FTICR-MS并采集5分钟数据,能够对纳摩尔浓度的核苷酸及其(13)C同位素异构体进行全面分析。分辨率和质量准确度使得能够通过计算机辅助明确鉴定大多数核苷酸种类,包括腺嘌呤、鸟嘌呤、尿嘧啶和胞嘧啶核苷酸的所有磷酸化形式、NAD(+)、NADH、NADP(+)、NADPH、环核苷酸、几种UDP-己糖及其所有(13)C同位素异构体。该方法应用于对在[U-(13)C]葡萄糖中生长的人肺腺癌A549细胞进行的SIRM研究,该细胞添加或不添加抗癌剂甲基亚硒酸。在m/z分辨率为400,000时,核苷酸的(13)C同位素异构体与所有其他元素同位素异构体完全分离,从而能够准确测定它们的(13)C丰度。该方法实现了在SIRM研究中用于代谢途径重建的核苷酸的高样品通量和高信息通量分析。