Huang He, Yuan Min, Seitzer Phillip, Ludwigsen Susan, Asara John M
Division of Signal Transduction, Beth Israel Deaconess Medical Center, Boston, MA 02115, USA.
Department of Medicine, Harvard Medical School, Boston, MA 02115, USA.
Methods Protoc. 2020 Jul 30;3(3):54. doi: 10.3390/mps3030054.
Stable isotopic tracer analysis is a technique used to determine carbon or nitrogen atom incorporation into biological systems. A number of mass spectrometry based approaches have been developed for this purpose, including high-resolution tandem mass spectrometry (HR-LC-MS/MS), selected reaction monitoring (SRM) and parallel reaction monitoring (PRM). We have developed an approach for analyzing untargeted metabolomic and lipidomic datasets using high-resolution mass spectrometry with polarity switching and implemented our approach in the open-source R script IsoSearch and in Scaffold Elements software. Using our strategy, which requires an unlabeled reference dataset and isotope labeled datasets across various biological conditions, we traced metabolic isotopomer alterations in breast cancer cells (MCF-7) treated with the metabolic drugs 2-deoxy-glucose, 6-aminonicotinamide, compound 968, and rapamycin. Metabolites and lipids were first identified by the commercial software Scaffold Elements and LipidSearch, then IsoSearch successfully profiled the C-isotopomers extracted metabolites and lipids from C-glucose labeled MCF-7 cells. The results interpreted known models, such as glycolysis and pentose phosphate pathway inhibition, but also helped to discover new metabolic/lipid flux patterns, including a reactive oxygen species (ROS) defense mechanism induced by 6AN and triglyceride accumulation in rapamycin treated cells. The results suggest the IsoSearch/Scaffold Elements platform is effective for studying metabolic tracer analysis in diseases, drug metabolism, and metabolic engineering for both polar metabolites and non-polar lipids.
稳定同位素示踪分析是一种用于确定碳或氮原子掺入生物系统的技术。为此已开发了多种基于质谱的方法,包括高分辨率串联质谱(HR-LC-MS/MS)、选择反应监测(SRM)和平行反应监测(PRM)。我们开发了一种使用具有极性切换功能的高分辨率质谱分析非靶向代谢组学和脂质组学数据集的方法,并在开源R脚本IsoSearch和Scaffold Elements软件中实现了我们的方法。使用我们的策略,该策略需要一个未标记的参考数据集和跨各种生物学条件的同位素标记数据集,我们追踪了用代谢药物2-脱氧葡萄糖、6-氨基烟酰胺、化合物968和雷帕霉素处理的乳腺癌细胞(MCF-7)中的代谢同位素异构体变化。代谢物和脂质首先由商业软件Scaffold Elements和LipidSearch鉴定,然后IsoSearch成功地从C-葡萄糖标记的MCF-7细胞中分析了提取的代谢物和脂质的C-同位素异构体。结果解释了已知模型,如糖酵解和磷酸戊糖途径抑制,但也有助于发现新的代谢/脂质通量模式,包括6AN诱导的活性氧(ROS)防御机制和雷帕霉素处理细胞中甘油三酯的积累。结果表明,IsoSearch/Scaffold Elements平台对于研究疾病、药物代谢以及极性代谢物和非极性脂质的代谢工程中的代谢示踪分析是有效的。