Differential effects of tryptophan on glucose synthesis in rats and guinea pigs

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Abstract

Tryptophan inhibition of gluconeogenesis in isolated rat liver cells is characterized by a 20 min lag period before linear rates of glucose output are attained. Half-maximal inhibition of gluconeogenesis in isolated rat hepatocytes is produced by approx. 0.1 mM-tryptophan. Tryptophan inhibits gluconeogenesis from all substrates giving rise to oxaloacetate, but stimulates glycerol-fuelled glucose production. Gluconeogenesis in guinea-pig hepatocytes is insensitive to tryptophan. Changes in metabolite concentrations in rat liver cells are consistent with a locus of inhibition at the step catalyzed by phosphoenolpyruvate carboxykinase. Inhibition of gluconeogenesis persists in cells from rats pretreated with tryptophan in vivo. Tryptophan has no effect on urea production from alanine, but decreases [1-14C]palmitate oxidation to 14CO2 and is associated with an increased [hydroxybutyrate]/[acetoacetate] ratio. These results are discussed with reference to the control of gluconeogenesis in various species.

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APA

Smith, S. A., Elliott, K. R. F., & Pogson, C. I. (1978). Differential effects of tryptophan on glucose synthesis in rats and guinea pigs. Biochemical Journal, 176(3), 817–825. https://doi.org/10.1042/bj1760817

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