Compensation in Pancreatic β-Cell Function in Subjects With Glucokinase Mutations

Author:

Sturis Jeppe1,Kurland Irwin J2,Byrne Marie M1,Mosekilde Erik3,Froguel Philippe4,Pilkis Simon J2,Bell Graeme I5,Polonsky Kenneth S1

Affiliation:

1. Departments of Medicine, University of Chicago Chicago, Illinois

2. Department of Physiology and Biophysics, State University of New York Stony Brook, New York

3. Physics Department, The Technical University of Denmark Lyngby, Denmark

4. Center for the Study of Human Polymorphism Paris, France

5. Biochemistry and Molecular Biology, Howard Hughes Medical Institute, University of Chicago Chicago, Illinois

Abstract

The relationship between the in vivo insulin secretory responsiveness of the pancreatic β-cell to glucose and the flux of glucose through the enzyme glucokinase was investigated in six subjects with heterozygous glucokinase mutations and in six matched control subjects. This was done by combining data published previously on the in vivo dose-response relationships between glucose and insulin secretion and on the in vitro enzymatic properties of wild-type and mutant forms of glucokinase. The flux of glucose through glucokinase (GK flux) in these subjects was estimated using a model based on the approximate Michaelis-Menten kinetics of wild-type and mutant forms of the enzyme. In two subjects with glucokinase mutations, which resulted in only a small reduction in enzymatic activity, the decrease in insulin secretion was directly proportional to the decrease in GK flux predicted using a Michaelis-Menten model for both mutant and wild-type glucokinase. However, in four subjects with glucokinase mutations, which resulted in severe reductions in enzymatic activity, insulin secretion was reduced compared with control subjects but less than predicted. This latter result implies the existence of a compensatory change in the β-cells of such subjects, which results in a relative increase in insulin secretory response. We propose modifications to the simple model relating glucose concentration and GK flux, including glucose-induced overexpression of the normal allele and a role of glucokinase regulatory protein. The modifications take into account the possibility that the degree of compensation may be directly related to the severity of the mutation.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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