Lewis-Sigler Institute for Integrative Genomics and Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.
Anal Chem. 2011 Dec 1;83(23):9114-22. doi: 10.1021/ac202220b. Epub 2011 Nov 4.
We present a liquid chromatography/mass spectrometry (LC/MS) method for long-chain and very-long-chain fatty acid analysis and its application to (13)C-tracer studies of fatty acid metabolism. Fatty acids containing 14 to 36 carbon atoms are separated by C(8) reversed-phase chromatography using a water-methanol gradient with tributylamine as ion pairing agent, ionized by electrospray and analyzed by a stand-alone orbitrap mass spectrometer. The median limit of detection is 5 ng/mL with a linear dynamic range of 100-fold. Ratios of unlabeled to (13)C-labeled species are quantitated precisely and accurately (average relative standard deviation 3.2% and deviation from expectation 2.3%). In samples consisting of fatty acids saponified from cultured mammalian cells, 45 species are quantified, with average intraday relative standard deviations for independent biological replicates of 11%. The method enables quantitation of molecular ion peaks for all labeled forms of each fatty acid. Different degrees of (13)C-labeling from glucose and glutamine correspond to fatty acid uptake from media, de novo synthesis, and elongation. To exemplify the utility of the method, we examined isogenic cell lines with and without activated Ras oncogene expression. Ras increases the abundance and alters the labeling patterns of saturated and monounsaturated very-long-chain fatty acids, with the observed pattern consistent with Ras leading to enhanced activity of ELOVL4 or an enzyme with similar catalytic activity. This LC/MS method and associated isotope tracer techniques should be broadly applicable to investigating fatty acid metabolism.
我们提出了一种液相色谱/质谱(LC/MS)方法,用于长链和超长链脂肪酸分析,并将其应用于脂肪酸代谢的(13)C 示踪研究。含有 14 到 36 个碳原子的脂肪酸通过 C(8)反相色谱分离,使用水-甲醇梯度,三丁胺作为离子对试剂,电喷雾电离,并由独立的轨道阱质谱仪进行分析。中值检测限为 5 ng/mL,线性动态范围为 100 倍。未标记与(13)C 标记物种的比值精确且准确地定量(平均相对标准偏差为 3.2%,与预期偏差为 2.3%)。在由培养的哺乳动物细胞水解得到的脂肪酸样品中,定量了 45 种脂肪酸,独立生物学重复的平均日内相对标准偏差为 11%。该方法能够定量每种脂肪酸的所有标记形式的分子离子峰。来自葡萄糖和谷氨酰胺的不同程度的(13)C 标记对应于从培养基中摄取脂肪酸、从头合成和延长。为了说明该方法的实用性,我们研究了具有和不具有激活的 Ras 致癌基因表达的同基因细胞系。Ras 增加了饱和和单不饱和超长链脂肪酸的丰度并改变了它们的标记模式,观察到的模式与 Ras 导致 ELOVL4 或具有类似催化活性的酶的活性增强一致。这种 LC/MS 方法和相关的同位素示踪技术应该广泛适用于研究脂肪酸代谢。