Effect of mutations on the sensitivity of human beta-cell glucokinase to liver regulatory protein

被引:37
作者
VeigadaCunha, M
Xu, LZ
Lee, YH
Marotta, D
Pilkis, SJ
VanSchaftingen, E
机构
[1] UNIV CATHOLIQUE LOUVAIN,B-1200 BRUSSELS,BELGIUM
[2] INST CELLULAR & MOL PATHOL,PHYSIOL CHEM LAB,BRUSSELS,BELGIUM
[3] UNIV MINNESOTA,SCH MED,DEPT BIOCHEM,MINNEAPOLIS,MN 55455
关键词
glucokinase; hexokinase; glucokinase regulatory protein; MODY; non-insulin-dependent diabetes mellitus;
D O I
10.1007/BF02658503
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Human beta-cell glucokinase and its liver counterpart displayed a half-saturating concentration of glucose (S-0.5) of about 8 mmol/l and a Hill coefficient of 1.7, and were as sensitive to inhibition by the rat liver regulatory protein as the rat liver enzyme. These results indicate that the N-terminal region of glucokinase, which differs among these three enzymes, is not implicated in the recognition of the regulatory protein. They also suggest that the regulatory protein, or a related protein, could modulate the affinity of glucokinase for glucose in beta cells. We have also tested the effect of several mutations, many of which are implicated in maturity onset diabetes of the young, The mutations affected the affinity for glucose and for the regulatory protein to different degrees, indicating that the binding site for these molecules is different. An Asp(158)Ala mutation, found in the expression plasmid previously thought to encode the wild-type enzyme, increased the affinity for glucose by about 2.5-fold without changing the affinity for the regulatory protein. The mutations that were found to decrease the affinity for the regulatory protein (Asn(166)Arg, Val(203)Ala, Asn(204)Gln, Lys(414)Ala) clustered in the hinge region of glucokinase and nearby in the large and small domains. These results are in agreement with the concept that part of the binding site for the regulatory protein is situated in the hinge region of this enzyme.
引用
收藏
页码:1173 / 1179
页数:7
相关论文
共 30 条
[21]  
TAKEDA J, 1993, J BIOL CHEM, V268, P15200
[22]   SPECIES AND TISSUE DISTRIBUTION OF THE REGULATORY PROTEIN OF GLUCOKINASE [J].
VANDERCAMMEN, A ;
VANSCHAFTINGEN, E .
BIOCHEMICAL JOURNAL, 1993, 294 :551-556
[23]   THE MECHANISM BY WHICH RAT-LIVER GLUCOKINASE IS INHIBITED BY THE REGULATORY PROTEIN [J].
VANDERCAMMEN, A ;
VANSCHAFTINGEN, E .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 191 (02) :483-489
[24]   BINDING OF SORBITOL 6-PHOSPHATE AND OF FRUCTOSE 1-PHOSPHATE TO THE REGULATORY PROTEIN OF LIVER GLUCOKINASE [J].
VANDERCAMMEN, A ;
DETHEUX, M ;
VANSCHAFTINGEN, E .
BIOCHEMICAL JOURNAL, 1992, 286 :253-256
[25]   COMPETITIVE-INHIBITION OF LIVER GLUCOKINASE BY ITS REGULATORY PROTEIN [J].
VANDERCAMMEN, A ;
VANSCHAFTINGEN, E .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1991, 200 (02) :545-551
[26]  
VANSCHAFTINGEN E, 1989, EUR J BIOCHEM, V179, P179
[27]   SHORT-TERM CONTROL OF GLUCOKINASE ACTIVITY - ROLE OF A REGULATORY PROTEIN [J].
VANSCHAFTINGEN, E ;
DETHEUX, M ;
DACUNHA, MV .
FASEB JOURNAL, 1994, 8 (06) :414-419
[28]   Amino acid conservation in animal glucokinases - Identification of residues implicated in the interaction with the regulatory protein [J].
VeigadaCunha, M ;
Courtois, S ;
Michel, A ;
Gosselain, E ;
VanSchaftingen, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (11) :6292-6297
[29]   HUMAN BETA-CELL GLUCOKINASE - DUAL ROLE OF SER-151 IN CATALYSIS AND HEXOSE AFFINITY [J].
XU, LZ ;
HARRISON, RW ;
WEBER, IT ;
PILKIS, SJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (17) :9939-9946
[30]  
XU LZ, 1994, J BIOL CHEM, V269, P27458