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June 1, 1985Proceedings of the National Academy of Sciences136 citationsOpen Access

Glycolysis and methylaminoisobutyrate uptake in rat-1 cells transfected with ras or myc oncogenes.

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ERE. RackerRRRoss J. ResnickRFR G Feldman

Key Points

  • The study aimed to explore glycolysis rates and amino acid uptake in rat-1 cells with oncogene transfections.
  • Transfected rat-1 cells with ras and myc oncogenes to assess glycolysis rates.
  • Exposed cells to type B transforming growth factor (TGF-beta) to evaluate changes in metabolic activity.
  • Measured the uptake of radioactive methylaminoisobutyric acid and L-methionine.
  • Ras cells had a high glycolysis rate while myc and control cells showed low rates, with TGF-beta increasing glycolysis in both.
  • Methylaminoisobutyric acid uptake was accelerated in cells exposed to TGF-beta, particularly noticeable in myc cells.
  • Methionine inhibited glycolysis in ras cells and TGF-beta treated myc cells.

Abstract

A high rate of aerobic glycolysis was catalyzed by rat-1 cells transfected with a ras oncogene (ras cells); rat-1 cells and rat-1 cells transfected with myc oncogene (myc cells) showed a low rate of glycolysis that was increased after exposure of the cells to type B transforming growth factor (TGF-beta). The uptake of radioactive methylaminoisobutyric acid or L-methionine via system A of amino acid transport also was accelerated after exposure of these cells to TGF-beta, with the myc cells being most sensitive and the ras cells least sensitive. Methionine was found to be a potent inhibitor of glycolysis in ras cells as well as in rat-1 or myc cells that were exposed to TGF-beta. We propose a relationship between the product of the ras oncogene (p21) and the protein(s) induced by exposure to TGF-beta.

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Cite This Study

Racker et al. (1985) studied this question.

synapsesocial.com/papers/6a00dea810d6befb257778fbhttps://doi.org/10.1073/pnas.82.11.3535
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