Literature DB >> 3015939

Differential regulation of glucokinase activity in pancreatic islets and liver of the rat.

F J Bedoya, F M Matschinsky, T Shimizu, J J O'Neil, M C Appel.   

Abstract

The differential tissue-specific regulation of glucokinase activity in liver and pancreatic islet cells was investigated in the insulinoma-bearing rat. A transplantable insulinoma caused hyperinsulinemia and hypoglycemia in the host by 2-3 months after implantation. Suppression of the pancreatic B-cells by the high insulin and/or low glucose manifested itself by a decrease of insulin in islet tissue. Removal of the tumor initiated transient insulin deficiency and hyperglycemia with extremes of these changes at 24 h after tumor resection. These conditions markedly affected glucose phosphorylation in the islet cells: glucokinase activity was reduced 71% in islet samples from insulinoma-bearing rats, and the enzyme fully recovered within 24 h after tumor resection. Hexokinase activity, by contrast, was not affected by these manipulations. To evaluate the relative contributions of hypoglycemia and hyperinsulinemia in islet glucokinase adaptation, glucose was intravenously infused to insulinoma-bearing rats; glycemia in excess of 150 mg/100 ml combined with excessive hyperinsulinemia resulted in a partial recovery of islet glucokinase activity, first apparent after 9 h of glucose infusion and with doubling of the activity after 24 h after glucose loading. In contrast, liver glucokinase was increased nearly 4-fold at the time of extreme hypoglycemia and hyperinsulinemia and rapidly fell to control rates following tumor removal. Intravenous infusion of glucose for 24 h into the tumor-bearing rat (i.e. hyperglycemia combined with excessive plasma insulin) had no influence on liver glucokinase activity. Liver hexokinase was not influenced by any of these experimental manipulations. The data indicate that the activities of pancreatic islet and liver glucokinase are regulated in a differential manner. Insulin is apparently the primary determinant of liver glucokinase and glucose seems to control islet glucokinase. Biochemical mechanisms for differential organ-specific regulation of glucokinase activity seem to have evolved such that this enzyme may play a dual role in glucose homeostasis, namely to serve as insulin-dependent glucose sensor in the B-cells and as insulin-sensitive determinant of hepatic glucose use.

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Year:  1986        PMID: 3015939

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  27 in total

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4.  High-resolution two-dimensional polyacrylamide gel electrophoresis reveals a glucose-response protein of 65 kDa in pancreatic islet cells.

Authors:  H W Collins; C Buettger; F Matschinsky
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5.  Insulin gene transfer enhances the function of human islet grafts.

Authors:  S Deng; M Vatamaniuk; M-M Lian; N Doliba; J Wang; E Bell; B Wolf; S Raper; F M Matschinsky; J F Markmann
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6.  Effect of biotin on glucokinase activity, mRNA expression and insulin release in cultured beta-cells.

Authors:  P Borboni; R Magnaterra; R A Rabini; R Staffolani; O Porzio; G Sesti; A Fusco; L Mazzanti; R Lauro; L N Marlier
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8.  Rat glucokinase gene: structure and regulation by insulin.

Authors:  M A Magnuson; T L Andreone; R L Printz; S Koch; D K Granner
Journal:  Proc Natl Acad Sci U S A       Date:  1989-07       Impact factor: 11.205

9.  In situ glucose uptake and glucokinase activity of pancreatic islets in diabetic and obese rodents.

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10.  Regulation of glucokinase and GLUT-2 glucose-transporter gene expression in pancreatic B-cells.

Authors:  M Tiedge; S Lenzen
Journal:  Biochem J       Date:  1991-11-01       Impact factor: 3.857

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