1. The development of active and inactive phosphorylase was determined in rat liver during the perinatal period. No inactive form could be found in tissues from animals less than 19 days gestation or older than the fifth postnatal day. 2. The regulation of phosphorylase in organ cultures of foetal rat liver was examined. None of the agents examined [glucagon, insulin or dibutyryl cyclic AMP (6-N,2′-O-dibutyryladenosine 3′:5′-cyclic monophosphate)] changed the amount of phosphorylase activity. 3. Glycogen concentration in these explants were nevertheless decreased more than twofold by 4h of incubation with glucagon or dibutyryl cyclic AMP. Incubation with insulin for 4h increased the glycogen content twofold. 4. Glycogen synthetase activity was examined in these explants. I-form activity (without glucose 6-phosphate) was found to decrease by a factor of two after 4h of incubation with dibutyryl cyclic AMP, whereas I+D activity (with glucose 6-phosphate) remained nearly constant. Incubation for 4h with insulin increased I-form activity threefold, with only a slight increase in I+D activity. 5. When explants were incubated with insulin followed by addition of dibutyryl cyclic AMP, the effects of insulin on glycogen concentration and glycogen synthetase activity were reversed. 6. These results indicate that the regulation of glycogen synthesis may be the major factor in the hormonal control of glycogen metabolism in neonatal rat liver.
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Research Article|
August 01 1973
Hormonal regulation of glycogen metabolism in neonatal rat liver
Alan L. Schwartz;
Alan L. Schwartz
1Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, U.S.A.
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Theodore W. Rall
Theodore W. Rall
1Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, U.S.A.
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Publisher: Portland Press Ltd
© 1973 London: The Biochemical Society
1973
Biochem J (1973) 134 (4): 985–993.
Citation
Alan L. Schwartz, Theodore W. Rall; Hormonal regulation of glycogen metabolism in neonatal rat liver. Biochem J 1 August 1973; 134 (4): 985–993. doi: https://doi.org/10.1042/bj1340985
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