Javascript must be enabled to continue!
Changes in Pancreatic Islet Glucokinase and Hexokinase Activities With Increasing Age, Obesity, and the Onset of Diabetes
View through CrossRef
We examined changes in high- and low-Km glucose phos-phorylating activity in pancreatic islet extracts from the prediabetic Zucker diabetic fatty (ZDF) rat between 5–6 weeks and 12 weeks of age (after the onset of diabetes). Comparisons were made between the activity observed in the ZDF rat and that seen in the ZDF lean control (ZLC) rat and the obese nondiabetic Zucker fatty (ZF) rat. At 5–6 weeks of age, insulin resistant ZDF and ZF rats were hyperinsulinemic, compared with the ZLC rat, but had normal plasma glucose levels. Kinetic parameters (Vmax and Km for glucose) of hex-okinase (HK) and Km of glucokinase (GCK) did not differ between groups. Islet GCK activity for ZDF and ZF rats was 1.7-fold greater than in ZLC rats (P < 0.02 and P < 0.001, respectively). By 12 weeks of age, hyper-secretion of insulin at 5.0 mmol/1 glucose was observed in perifused islets from both obese groups relative to the ZLC rat. Islets from ZDF rats failed to increase insulin secretion in response to increased glucose concentration. Group differences in the kinetic parameters for GCK or in the Km values for HK were not significant. Islet HK activity for ZDF and ZF rats was 1.9-fold (P < 0.05) and 1.7-fold (P < 0.05) greater, respectively, than for ZLC rats. Compared with the 5- to 6-week-old animals, HK activity increased 3.1-fold (P < 0.001), 2.5-fold (P < 0.002), and 2.0-fold (P < 0.05) for ZDF, ZF, and ZLC rats, respectively. Differences in GCK activity between 5- to 6- and 12-week-old rats were not significant for any of the groups. We conclude: 1) increased islet glucose phosphorylating activity is present in insulin resistant and hyperinsulinemic ZF and ZDF rats, relative to the ZLC rat; 2) at 12 weeks of age, hyperinsulinemic ZDF and ZF rats demonstrated significant increases in HK activity, compared with lean controls; and 3) deficiency in GCK activity does not explain failure of diabetic ZDF islets to respond to glucose, since differences between diabetic ZDF and non-diabetic ZF rats were not statistically significant. Increases in pancreatic islet phosphorylating activity seem to be important in maintaining basal hyperinsulinemia in insulin-resistant animals, but do not appear to play a role in the progression to glucose intolerance and diabetes.
American Diabetes Association
Title: Changes in Pancreatic Islet Glucokinase and Hexokinase Activities With Increasing Age, Obesity, and the Onset of Diabetes
Description:
We examined changes in high- and low-Km glucose phos-phorylating activity in pancreatic islet extracts from the prediabetic Zucker diabetic fatty (ZDF) rat between 5–6 weeks and 12 weeks of age (after the onset of diabetes).
Comparisons were made between the activity observed in the ZDF rat and that seen in the ZDF lean control (ZLC) rat and the obese nondiabetic Zucker fatty (ZF) rat.
At 5–6 weeks of age, insulin resistant ZDF and ZF rats were hyperinsulinemic, compared with the ZLC rat, but had normal plasma glucose levels.
Kinetic parameters (Vmax and Km for glucose) of hex-okinase (HK) and Km of glucokinase (GCK) did not differ between groups.
Islet GCK activity for ZDF and ZF rats was 1.
7-fold greater than in ZLC rats (P < 0.
02 and P < 0.
001, respectively).
By 12 weeks of age, hyper-secretion of insulin at 5.
0 mmol/1 glucose was observed in perifused islets from both obese groups relative to the ZLC rat.
Islets from ZDF rats failed to increase insulin secretion in response to increased glucose concentration.
Group differences in the kinetic parameters for GCK or in the Km values for HK were not significant.
Islet HK activity for ZDF and ZF rats was 1.
9-fold (P < 0.
05) and 1.
7-fold (P < 0.
05) greater, respectively, than for ZLC rats.
Compared with the 5- to 6-week-old animals, HK activity increased 3.
1-fold (P < 0.
001), 2.
5-fold (P < 0.
002), and 2.
0-fold (P < 0.
05) for ZDF, ZF, and ZLC rats, respectively.
Differences in GCK activity between 5- to 6- and 12-week-old rats were not significant for any of the groups.
We conclude: 1) increased islet glucose phosphorylating activity is present in insulin resistant and hyperinsulinemic ZF and ZDF rats, relative to the ZLC rat; 2) at 12 weeks of age, hyperinsulinemic ZDF and ZF rats demonstrated significant increases in HK activity, compared with lean controls; and 3) deficiency in GCK activity does not explain failure of diabetic ZDF islets to respond to glucose, since differences between diabetic ZDF and non-diabetic ZF rats were not statistically significant.
Increases in pancreatic islet phosphorylating activity seem to be important in maintaining basal hyperinsulinemia in insulin-resistant animals, but do not appear to play a role in the progression to glucose intolerance and diabetes.
Related Results
Upregulated Hexokinase Activity in Isolated Islets from Diabetic 90% Pancreatectomized Rats
Upregulated Hexokinase Activity in Isolated Islets from Diabetic 90% Pancreatectomized Rats
Glucokinase is the β-cell glucose sensor, i.e., the site in glucose metabolism that determines the glucose set-point (sensitivity) for insulin secretion. Hexokinase is also present...
Progressive Islet Graft Failure Occurs Significantly Earlier in Autoantibody-Positive Than in Autoantibody-Negative IDDM Recipients of Intrahepatic Islet Allografts
Progressive Islet Graft Failure Occurs Significantly Earlier in Autoantibody-Positive Than in Autoantibody-Negative IDDM Recipients of Intrahepatic Islet Allografts
Alloimmunity has been uncovered to be a cause of graft loss representing a major barrier for clinical islet transplantation, and several studies are designed to evaluate new strate...
Sequence Variations of the Glucokinase Gene in Japanese Subjects With NIDDM
Sequence Variations of the Glucokinase Gene in Japanese Subjects With NIDDM
Mutations in the glucokinase gene have been identified recently in patients with maturity-onset diabetes of the young, a subtype of NIDDM. The proposed role of glucokinase as a glu...
THE HEXOKINASE 1 GENE OF BLOODSTREAM FORM Trypanosoma brucei brucei (FEDERE ISOLATE) CONSERVES AMINO ACIDS IN DOMAINS AND MOTIFS PECULIAR TO THE HEXOKINASE 2 SUPERFAMILY
THE HEXOKINASE 1 GENE OF BLOODSTREAM FORM Trypanosoma brucei brucei (FEDERE ISOLATE) CONSERVES AMINO ACIDS IN DOMAINS AND MOTIFS PECULIAR TO THE HEXOKINASE 2 SUPERFAMILY
Trypanosoma brucei brucei hexokinase is the first key regulatory enzyme of the glycolytic pathway which serves as the only source of ATP and nucleic acid precursors for the parasit...
Macrophage-Mediated Islet Cell Cytotoxicity in BB Rats
Macrophage-Mediated Islet Cell Cytotoxicity in BB Rats
Islet cell killing mediated by natural killer cells and T-lymphocytes in diabetes-prone (DP) and diabetic BB rats has been described, but other killing mechanisms may also be invol...
Zebra Finch Glucokinase Containing Two Homologous Halves Is an In Silico Chimera
Zebra Finch Glucokinase Containing Two Homologous Halves Is an In Silico Chimera
Chimerical nature of the gene annotated as Zebra finch (Taeniopygia guttata) glucokinase (hexokinase IV) has been proved in this study. N-half of the protein encoded by that gene s...
Optimizing Post-Transplantation Detection of Subcutaneously Transplanted Islets Using Dithizone Staining
Optimizing Post-Transplantation Detection of Subcutaneously Transplanted Islets Using Dithizone Staining
ABSTRACT
Introduction
Pancreatic islet transplantation is a promising therapeutic strategy to restore insulin independence in p...
Obstacles and Impediments of Overweight and Obesity
Obstacles and Impediments of Overweight and Obesity
Obesity is now pandemic, affecting millions of people in worldwide [1]. Obesity is defined as the excessive fat accumulation which may damage the health. Two groups of beneficial b...

