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J. Biochem, 1988, Vol. 104, No. 1 98-101
© 1988 Japanese Biochemical Society


research-article

Compensatory Route of Spermidine Acetylation and Oxidation Can Supply Sufficient Putrescine for Hepatic DNA Synthesis at an Early Stage after Partial Hepatectomy in Diaminopropane-Treated Rats

Yuzuru Sato and Kenji Fujiwara

First Department of Internal Medicine, Faculty of Medicine, The University of Tokyo Bunkyo-ku, Tokyo 113

Hepatic ornithine decarboxylase activity in rats increased 2 h after partial hepatectomy, showing two peaks at 4 and 10 h. When the rats received 1,3-diaminopropane (DAP) from 0 to 4 h or from 6 to 10 h, this increase wassuppressed at 6 or 12 h, respectively, whereas hepatic spermidine N 1-acetyltransferase activity was enhanced by DAP administration at 6 as well as 12 h, though the levels at 12 h were one-fifth of those at 6 h. An increase in hepatic DNA synthesis at 22 h did not occur in the rats given DAP from 6 to 10 h.It recovered after administration of putrescine, but not that of spermidine. In contrast, such an inhibition wasnotseen in the rats given DAP from 0 to 4 h; it occurred when quinacrine, a polyamine oxidase inhibitor, was concomitantly dosed, and disappeared with further addition of putrescine. Hepatic DNA synthesis changed in close association with hepatic putrescine content irrespective of spermidine and spermine contents in these rats. Putrescine may be essential for liver regeneration after partial hepatectomy, and can be produced in sufficient quantityto support hepatic DNA synthesis by the compensatory route of spermidine acetylation and oxidation when ornithine decarboxylase activity is suppressed at an early stage.


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