Properties of normal and mutant recombinant human ketohexokinases and implications for the pathogenesis of essential fructosuria

被引:76
作者
Asipu, A
Hayward, BE
O'Reilly, J
Bonthron, DT [1 ]
机构
[1] Univ Leeds, St James Hosp, Mol Med Unit, Leeds LS9 7TF, W Yorkshire, England
[2] Univ Leeds, Sch Biol & Mol Biol, Leeds, W Yorkshire, England
关键词
D O I
10.2337/diabetes.52.9.2426
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Alternative splicing of the ketohexokinase (fructokinase) gene generates a "central" predominantly hepatic isoform (ketohexokinase-C) and a more widely distributed ketohexokinase-A. Only the abundant hepatic isoform is known to possess activity, and no function is defined for the lower levels of ketohexokinase-A in peripheral tissues. Hepatic ketohexokinase deficiency causes the benign disorder essential fructosuria. The molecular basis of this has been defined in one family (compound heterozygosity for mutations Gly40Arg and Ala43Thr). Here we show that both ketohexokinase isoforms are indeed active. Ketohexokinase-A has much poorer substrate affinity than ketohexokinase-C for fructose but is considerably more thermostable. The Gly40Arg mutation seems null, rendering both ketohexokinase-A and ketohexokinase-C inactive and largely insoluble. The Ala43Thr mutant retains activity, but this mutation decreases the thermal stability of both ketohexokinase-A and ketohexokinase-C. At physiologic temperature, this results in significant loss of ketohexokinase-C activity but not of ketohexokinase-A. Affected individuals who carry both mutations therefore probably have a selective deficiency of hepatic ketohexokinase, with peripheral ketohexokinase-A being preserved. These findings raise the possibility that ketohexokinase-A serves an unknown physiologic function that remains intact in essential fructosuria. Further mutation analysis in this rare disorder could illuminate the question of whether ketohexokinase-A activity is, unlike that of ketohexokinase-C, physiologically indispensable.
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页码:2426 / 2432
页数:7
相关论文
共 23 条
[1]  
ADELMAN RC, 1967, J BIOL CHEM, V242, P3360
[2]   Evidence that glucokinase regulatory protein is expressed and interacts with glucokinase in rat brain [J].
Alvarez, E ;
Roncero, I ;
Chowen, JA ;
Vázquez, P ;
Blázquez, E .
JOURNAL OF NEUROCHEMISTRY, 2002, 80 (01) :45-53
[3]   THE PURIFICATION AND PROPERTIES OF HUMAN-LIVER KETOHEXOKINASE - A ROLE FOR KETOHEXOKINASE AND FRUCTOSE-BISPHOSPHATE ALDOLASE IN THE METABOLIC PRODUCTION OF OXALATE FROM XYLITOL [J].
BAIS, R ;
JAMES, HM ;
ROFE, AM ;
CONYERS, RAJ .
BIOCHEMICAL JOURNAL, 1985, 230 (01) :53-60
[4]   CHANGES OF LIVER METABOLITE CONCENTRATIONS IN ADULTS WITH DISORDERS OF FRUCTOSE METABOLISM AFTER INTRAVENOUS FRUCTOSE BY P-31 MAGNETIC-RESONANCE SPECTROSCOPY [J].
BOESIGER, P ;
BUCHLI, R ;
MEIER, D ;
STEINMANN, B ;
GITZELMANN, R .
PEDIATRIC RESEARCH, 1994, 36 (04) :436-440
[5]   MOLECULAR-BASIS OF ESSENTIAL FRUCTOSURIA - MOLECULAR-CLONING AND MUTATIONAL ANALYSIS OF HUMAN KETOHEXOKINASE (FRUCTOKINASE) [J].
BONTHRON, DT ;
BRADY, N ;
DONALDSON, IA ;
STEINMANN, B .
HUMAN MOLECULAR GENETICS, 1994, 3 (09) :1627-1631
[6]   FRUCTOSE UTILIZATION BY LUNG [J].
DAS, DK ;
NEOGI, A ;
STEINBERG, H .
JOURNAL OF APPLIED PHYSIOLOGY, 1984, 56 (02) :333-337
[7]  
DAS DK, 1985, CLIN PHYSIOL BIOCH, V3, P240
[8]   FRUCTOSE 1-PHOSPHATE AND THE REGULATION OF GLUCOKINASE ACTIVITY IN ISOLATED HEPATOCYTES [J].
DAVIES, DR ;
DETHEUX, M ;
VANSCHAFTINGEN, E .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 192 (02) :283-289
[9]   Glucokinase regulatory protein is essential for the proper subcellular localisation of liver glucokinase [J].
de la Iglesia, N ;
Veiga-da-Cunha, M ;
Van Schaftingen, E ;
Guinovart, JJ ;
Ferrer, JC .
FEBS LETTERS, 1999, 456 (02) :332-338
[10]   EXPRESSION OF RAT-LIVER KETOHEXOKINASE IN YEAST RESULTS IN FRUCTOSE INTOLERANCE [J].
DONALDSON, IA ;
DOYLE, TC ;
MATAS, N .
BIOCHEMICAL JOURNAL, 1993, 291 :179-186