RRC ID 54082
著者 Okahashi N, Maeda K, Kawana S, Iida J, Shimizu H, Matsuda F.
タイトル Sugar phosphate analysis with baseline separation and soft ionization by gas chromatography-negative chemical ionization-mass spectrometry improves flux estimation of bidirectional reactions in cancer cells.
ジャーナル Metab Eng
Abstract Precise measurement of sugar phosphates in glycolysis and the pentose phosphate (PP) pathway for 13C-metabolic flux analysis (13C-MFA) is needed to understand cancer-specific metabolism. Although various analytical methods have been proposed, analysis of sugar phosphates is challenging because of the structural similarity of various isomers and low intracellular abundance. In this study, gas chromatography-negative chemical ionization-mass spectrometry (GC-NCI-MS) is applied to sugar phosphate analysis with o-(2,3,4,5,6-pentafluorobenzyl) oxime (PFBO) and trimethylsilyl (TMS) derivatization. Optimization of the GC temperature gradient achieved baseline separation of sugar phosphates in 31 min. Mass spectra showed the predominant generation of fragment ions containing all carbon atoms in the sugar phosphate backbone. The limit of detection of pentose 5-phosphates and hexose 6-phosphates was 10 nM. The method was applied to 13C-labeling measurement of sugar phosphates for 13C-MFA of the MCF-7 human breast cancer cell line. 13C-labeling of sugar phosphates for 13C-MFA improved the estimation of the net flux and reversible flux of bidirectional reactions in glycolysis and the PP pathway.
巻・号 51
ページ 43-49
公開日 2019-1-1
DOI 10.1016/j.ymben.2018.08.011
PII S1096-7176(18)30179-4
PMID 30176394
MeSH Cell Line, Tumor* Energy Metabolism Female Fluorobenzenes Gas Chromatography-Mass Spectrometry Humans Isomerism MCF-7 Cells Metabolic Flux Analysis / methods* Oximes Spectrometry, Mass, Electrospray Ionization Sugar Phosphates / analysis* Trimethylsilyl Compounds / metabolism
IF 7.263
引用数 1
リソース情報
ヒト・動物細胞 MCF7(RCB1904)