In isolated hepatocytes in suspension, the effect of sorbitol but not that of fructose to increase the concentration of fructose 1-phosphate and to stimulate glucokinase was abolished by 2-hydroxymethyl-4-(4-N,N-dimethylamino-1-piperazino)-pyrimidine (SDI 158), an inhibitor of sorbitol dehydrogenase. In hepatocytes in primary culture, fructose was metabolized at approximately one-quarter of the rate of sorbitol, and was therefore much less potent than the polyol in increasing the concentration of fructose 1-phosphate and the translocation of glucokinase. In cultures, sorbitol, commercial mannitol, fructose, d-glyceraldehyde or high concentrations of glucose caused fructose 1-phosphate formation and glucokinase translocation in parallel. Commercial mannitol was contaminated by approx. 1% sorbitol, which accounted for its effects. The effects of sorbitol, fructose and elevated concentrations of glucose were partly inhibited by ethanol, glycerol and glucosamine. Mannoheptulose increased translocation without affecting fructose 1-phosphate concentration. Kinetic studies performed with recombinant human β-cell glucokinase indicated that this sugar, in contrast with N-acetylglucosamine, binds to glucokinase competitively with the regulatory protein. All these observations indicate that translocation is promoted by agents that favour the dissociation of the glucokinase–regulatory-protein complex either by binding to the regulatory protein (fructose 1-phosphate) or to glucokinase (glucose, mannoheptulose). They support the hypothesis that the regulatory protein of glucokinase acts as an anchor for this enzyme that slows down its release from digitonin-permeabilized cells.
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January 1997
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Research Article|
January 01 1997
Investigation on the mechanism by which fructose, hexitols and other compounds regulate the translocation of glucokinase in rat hepatocytes Available to Purchase
Liliana NICULESCU;
Liliana NICULESCU
1Laboratoire de Chimie Physiologique, Université Catholique de Louvain and International Institute of Cellular and Molecular Pathology, UCL 75.39, Avenue Hippocrate 75, B-1200 Brussels, Belgium
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Maria VEIGA-da-CUNHA;
Maria VEIGA-da-CUNHA
1Laboratoire de Chimie Physiologique, Université Catholique de Louvain and International Institute of Cellular and Molecular Pathology, UCL 75.39, Avenue Hippocrate 75, B-1200 Brussels, Belgium
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Emile Van SCHAFTINGEN
Emile Van SCHAFTINGEN
*
1Laboratoire de Chimie Physiologique, Université Catholique de Louvain and International Institute of Cellular and Molecular Pathology, UCL 75.39, Avenue Hippocrate 75, B-1200 Brussels, Belgium
*To whom correspondence should be addressed.
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Publisher: Portland Press Ltd
Received:
May 28 1996
Revision Received:
August 14 1996
Accepted:
September 03 1996
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London © 1997
1997
Biochem J (1997) 321 (1): 239–246.
Article history
Received:
May 28 1996
Revision Received:
August 14 1996
Accepted:
September 03 1996
Citation
Liliana NICULESCU, Maria VEIGA-da-CUNHA, Emile Van SCHAFTINGEN; Investigation on the mechanism by which fructose, hexitols and other compounds regulate the translocation of glucokinase in rat hepatocytes. Biochem J 1 January 1997; 321 (1): 239–246. doi: https://doi.org/10.1042/bj3210239
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