Callender Hannah L, Forrester Jeffrey S, Ivanova Pavlina, Preininger Anita, Milne Stephen, Brown H Alex
Department of Pharmacology, Vanderbilt Institute of Chemical Biology, Vanderbilt University, Nashville, Tennessee 37232, USA.
Anal Chem. 2007 Jan 1;79(1):263-72. doi: 10.1021/ac061083q.
Diacylglycerols (DAGs) play significant roles in both intermediate metabolism and signal transduction. These lipid species are second messengers involved in modulating a plethora of cellular processes. Evaluation of DAG species concentrations has been hampered by the lack of a reliable method for molecular species analysis within a complex mixture of cellular lipids. We describe a new method for quantitative analysis of DAG species from complex biological extracts based on positive mode electrospray ionization mass spectrometry without prior derivatization. Quantification is achieved using internal standards and calibration curves constructed by spiking cell extracts with different concentrations of DAG species containing various acyl chain lengths and degrees of unsaturation. The new mass spectral data processing algorithm incorporates a multiple linear regression model including a factor accountable for possible interactions between experimental preparations and the slope of the curve for the standards, allowing the examinations of the effects of sample origin conditions (such as cell types, phenotypes, etc.) and instrument variability on this slope. Internal standards provide a basis for quantification of 28 DAG molecular species detected in RAW 264.7 cells after stimulation of a G-protein coupled receptor with platelet activating factor. This method displays excellent reproducibility over the established range of concentrations with variations of < or =10% and is highly sensitive with a detection limit of 0.1-0.4 pmol/microL depending upon acyl chain composition. We have shown differential effects on various DAGs in response to a ligand which illustrates the importance of examining lipids at the molecular species level rather than as a single homogeneous entity.
二酰基甘油(DAGs)在中间代谢和信号转导中都发挥着重要作用。这些脂质种类是参与调节众多细胞过程的第二信使。由于缺乏一种可靠的方法来分析细胞脂质复杂混合物中的分子种类,DAG种类浓度的评估一直受到阻碍。我们描述了一种基于正模式电喷雾电离质谱法,无需事先衍生化即可从复杂生物提取物中定量分析DAG种类的新方法。使用内标和通过用不同浓度的含有各种酰基链长度和不饱和度的DAG种类对细胞提取物进行加标构建的校准曲线来实现定量。新的质谱数据处理算法纳入了一个多元线性回归模型,该模型包括一个负责实验制剂与标准曲线斜率之间可能相互作用的因子,从而可以考察样品来源条件(如细胞类型、表型等)和仪器变异性对该斜率的影响。内标为定量检测用血小板活化因子刺激G蛋白偶联受体后RAW 264.7细胞中检测到的28种DAG分子种类提供了基础。该方法在既定浓度范围内显示出出色的重现性,变化<或=10%,并且高度灵敏,检测限为0.1 - 0.4 pmol/μL,具体取决于酰基链组成。我们已经证明了对配体响应时各种DAG的不同影响,这说明了在分子种类水平而非作为单一均匀实体来研究脂质的重要性。