Literature DB >> 25936961

Metabolic characterization of cultured mammalian cells by mass balance analysis, tracer labeling experiments and computer-aided simulations.

Nobuyuki Okahashi1, Susumu Kohno2, Shunsuke Kitajima3, Fumio Matsuda4, Chiaki Takahashi5, Hiroshi Shimizu6.   

Abstract

Studying metabolic directions and flow rates in cultured mammalian cells can provide key information for understanding metabolic function in the fields of cancer research, drug discovery, stem cell biology, and antibody production. In this work, metabolic engineering methodologies including medium component analysis, (13)C-labeling experiments, and computer-aided simulation analysis were applied to characterize the metabolic phenotype of soft tissue sarcoma cells derived from p53-null mice. Cells were cultured in medium containing [1-(13)C] glutamine to assess the level of reductive glutamine metabolism via the reverse reaction of isocitrate dehydrogenase (IDH). The specific uptake and production rates of glucose, organic acids, and the 20 amino acids were determined by time-course analysis of cultured media. Gas chromatography-mass spectrometry analysis of the (13)C-labeling of citrate, succinate, fumarate, malate, and aspartate confirmed an isotopically steady state of the cultured cells. After removing the effect of naturally occurring isotopes, the direction of the IDH reaction was determined by computer-aided analysis. The results validated that metabolic engineering methodologies are applicable to soft tissue sarcoma cells derived from p53-null mice, and also demonstrated that reductive glutamine metabolism is active in p53-null soft tissue sarcoma cells under normoxia.
Copyright © 2015 The Society for Biotechnology, Japan. Published by Elsevier B.V. All rights reserved.

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Keywords:  (13)C-tracer experiment; Cultured mammalian cell; Metabolic engineering; Reductive glutamine metabolism; Soft tissue sarcoma; p53

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Year:  2015        PMID: 25936961     DOI: 10.1016/j.jbiosc.2015.04.003

Source DB:  PubMed          Journal:  J Biosci Bioeng        ISSN: 1347-4421            Impact factor:   2.894


  2 in total

1.  Mass Spectrometry-Based Method to Study Inhibitor-Induced Metabolic Redirection in the Central Metabolism of Cancer Cells.

Authors:  Chie Araki; Nobuyuki Okahashi; Kousuke Maeda; Hiroshi Shimizu; Fumio Matsuda
Journal:  Mass Spectrom (Tokyo)       Date:  2018-06-14

2.  Direct and quantitative analysis of altered metabolic flux distributions and cellular ATP production pathway in fumarate hydratase-diminished cells.

Authors:  Shingo Noguchi; Hirokazu Ishikawa; Kenichi Wakita; Fumio Matsuda; Hiroshi Shimizu
Journal:  Sci Rep       Date:  2020-08-03       Impact factor: 4.379

  2 in total

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