|
Diabetes, Vol 46, Issue 9 1434-1439, Copyright © 1997 by American Diabetes Association
Changes in pancreatic islet glucokinase and hexokinase activities with increasing age, obesity, and the onset of diabetes
BN Cockburn, DM Ostrega, J Sturis, C Kubstrup, KS Polonsky and GI Bell
Howard Hughes Medical Institute and the Department of Biochemistry and Molecular Biology, University of Chicago, Illinois 60637, USA.
We examined changes in high- and low-Km glucose phosphorylating 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 hexokinase (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, hypersecretion of insulin
at 5.0 mmol/l 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 nondiabetic 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.

CiteULike Del.icio.us Digg Reddit Technorati What's this?
This article has been cited by other articles:

|
 |

|
 |
 
X. Li, L. Zhang, S. Meshinchi, C. Dias-Leme, D. Raffin, J. D. Johnson, M. K. Treutelaar, and C. F. Burant
Islet Microvasculature in Islet Hyperplasia and Failure in a Model of Type 2 Diabetes
Diabetes,
November 1, 2006;
55(11):
2965 - 2973.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
Y.-P. Zhou, A. Madjidi, M. E. Wilson, D. A. Nothhelfer, J. H. Johnson, J. F. Palma, A. Schweitzer, C. Burant, J. E. Blume, and J. D. Johnson
Matrix Metalloproteinases Contribute to Insulin Insufficiency in Zucker Diabetic Fatty Rats
Diabetes,
September 1, 2005;
54(9):
2612 - 2619.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
C. Lajoie, A. Calderone, F. Trudeau, N. Lavoie, G. Massicotte, S. Gagnon, and L. Beliveau
Exercise training attenuated the PKB and GSK-3 dephosphorylation in the myocardium of ZDF rats
J Appl Physiol,
May 1, 2004;
96(5):
1606 - 1612.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
L. Wu, W. Nicholson, S. M. Knobel, R. J. Steffner, J. M. May, D. W. Piston, and A. C. Powers
Oxidative Stress Is a Mediator of Glucose Toxicity in Insulin-secreting Pancreatic Islet Cell Lines
J. Biol. Chem.,
March 26, 2004;
279(13):
12126 - 12134.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
Y. Q. Liu, T. L. Jetton, and J. L. Leahy
beta -Cell Adaptation to Insulin Resistance. INCREASED PYRUVATE CARBOXYLASE AND MALATE-PYRUVATE SHUTTLE ACTIVITY IN ISLETS OF NONDIABETIC ZUCKER FATTY RATS
J. Biol. Chem.,
October 11, 2002;
277(42):
39163 - 39168.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
Y. Q. Liu, P. W. Nevin, and J. L. Leahy
beta -Cell adaptation in 60% pancreatectomy rats that preserves normoinsulinemia and normoglycemia
Am J Physiol Endocrinol Metab,
July 1, 2000;
279(1):
E68 - E73.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
R. Aalinkeel, M. Srinivasan, S. C. Kalhan, S. G. Laychock, and M. S. Patel
A dietary intervention (high carbohydrate) during the neonatal period causes islet dysfunction in rats
Am J Physiol Endocrinol Metab,
December 1, 1999;
277(6):
E1061 - E1069.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
J.-C. Jonas, A. Sharma, W. Hasenkamp, H. Ilkova, G. Patane, R. Laybutt, S. Bonner-Weir, and G. C. Weir
Chronic Hyperglycemia Triggers Loss of Pancreatic beta Cell Differentiation in an Animal Model of Diabetes
J. Biol. Chem.,
May 14, 1999;
274(20):
14112 - 14121.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
I. D. Dukes, S. Sreenan, M. W. Roe, M. Levisetti, Y.-P. Zhou, D. Ostrega, G. I. Bell, M. Pontoglio, M. Yaniv, L. Philipson, et al.
Defective Pancreatic beta -Cell Glycolytic Signaling in Hepatocyte Nuclear Factor-1alpha -deficient Mice
J. Biol. Chem.,
September 18, 1998;
273(38):
24457 - 24464.
[Abstract]
[Full Text]
[PDF]
|
 |
|
Copyright © 1997 by the American Diabetes Association.
|
|
| |
|