Cyclic nucleotide concentrations and guanylate cyclase activity were measured in regenerating rat liver. Previous work has shown that in livers of partially hepatectomized rats the activity of a membrane-bound guanylate cyclase increases considerably during the early replicative phase [Kimura & Murad (1975) Proc. Natl. Acad. Sci. U.S.A.72, 1965–1969; Goridis & Reutter (1975) Nature (London) 257, 698–700]. Over the same time period after partial hepatectomy, increased tissue concentrations of cyclic GMP were found when the rats were killed under pentobarbital anaesthesia, but not when anaesthesia was omitted. The results obtained on hepatectomized livers were compared with the changes in guanylate cyclase activity and cyclic nucleotide concentrations during the response to galactosamine treatment. Here, a peak of guanylate cyclase activity and of cyclic GMP concentrations occurred at 8h, that is before the beginning of the proliferative response. Both parameters were normal at the time of increased DNA synthesis. There does not, therefore, seem to be a consistent correlation between changes in guanylate cyclase activity or concentrations of cyclic GMP and an increase in liver DNA synthesis. A modest rise in cyclic AMP concentrations was found, however, in livers of galactosamine-treated rats, which was coincident with the time of DNA synthesis.
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Research Article|
April 15 1977
Guanylate cyclase activity and cyclic nucleotide concentrations during liver regeneration after experimental injury
Christo Goridis;
Christo Goridis
*C.N.R.S.–CBM4, 13274 Marseille Cedex 2, France
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Jean Zwiller;
Jean Zwiller
†Centre de Neurochimie, 67085 Strasbourg Cedex, France
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Werner Reutter
Werner Reutter
‡Institut der Universität Freiburg, 78 Freiburg, Germany
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Publisher: Portland Press Ltd
Online ISSN: 1470-8728
Print ISSN: 0264-6021
© 1977 London: The Biochemical Society
1977
Biochem J (1977) 164 (1): 33–39.
Citation
Christo Goridis, Jean Zwiller, Werner Reutter; Guanylate cyclase activity and cyclic nucleotide concentrations during liver regeneration after experimental injury. Biochem J 15 April 1977; 164 (1): 33–39. doi: https://doi.org/10.1042/bj1640033
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