A difference in the sequence of steps in the reactions catalyzed by two closely homologous forms of glutamate dehydrogenase

被引:12
作者
Maniscalco, SJ
Saha, SK
Vicedomine, P
Fisher, HF
机构
[1] VET AFFAIRS MED CTR,RES SERV,KANSAS CITY,MO 64128
[2] UNIV KANSAS,MED CTR,DEPT BIOCHEM,LAB MOLEC BIOCHEM,KANSAS CITY,MO 64128
关键词
D O I
10.1021/bi9509098
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Glutamate dehydrogenase from beef liver (bl GDH) and the corresponding enzyme from Clostridium symbiosum (cs GDH) each catalyze the same sequence of chemical events in the oxidative deamination of L-glutamate. This catalysis involves interactions between at least six conserved functional groups, each of which appears to occupy the same geometric position with respect to the substrate molecule in both enzyme-coenzyme-L-glutamate reactive ternary complexes. In both cases steady-state V/K pH profiles indicate the requirement for the transfer to the solvent of a single proton from the same abnormal lysine for L-glutamate to bind and react; the pK of that lysine is the same for both enzymes. Here we report studies of the proton traffic between enzyme and solvent using direct pH-stat back-titration and indicator dye measurements on dead-end inhibitor ternary complexes, simultaneous transient-state time courses of proton and product, and transient-state kinetic isotope studies on both enzymes. We find that in the cs GDH catalyzed reaction the single proton is released only after the hydride transfer step whereas in the bl GDH reaction this proton release occurs prior to the hydride transfer step, despite the fact that the substrate molecule undergoes the same sequence of chemical events in both reactions. Interpreting these results in the context of the X-ray crystallographic structures of cs GDH and its NAD binary complex and of thermodynamic studies of bl GDH and its complexes, we conclude that the difference in the relative times of proton release in the two enzyme-catalyzed reactions must be ascribed to a difference in the sequence of active site cleft-opening and -closing events in the two otherwise identical reaction sequences. We suggest a possible biological significance to this unusual method of modulating a common reaction to suit differing metabolic roles.
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页码:89 / 94
页数:6
相关论文
共 27 条
[1]  
[Anonymous], ENZYMES
[2]   SUBUNIT ASSEMBLY AND ACTIVE-SITE LOCATION IN THE STRUCTURE OF GLUTAMATE-DEHYDROGENASE [J].
BAKER, PJ ;
BRITTON, KL ;
ENGEL, PC ;
FARRANTS, GW ;
LILLEY, KS ;
RICE, DW ;
STILLMAN, TJ .
PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1992, 12 (01) :75-86
[3]   MECHANISM OF INACTIVATION OF L-GLUTAMATE DEHYDROGENASE BY PYRIDOXAL AND PYRIDOXAL-PHOSPHATE [J].
BROWN, A ;
CULVER, JM ;
FISHER, HF .
BIOCHEMISTRY, 1973, 12 (22) :4367-4373
[4]   THE BIOCHEMISTRY AND ENZYMOLOGY OF AMINO-ACID DEHYDROGENASES [J].
BRUNHUBER, NMW ;
BLANCHARD, JS .
CRITICAL REVIEWS IN BIOCHEMISTRY AND MOLECULAR BIOLOGY, 1994, 29 (06) :415-467
[5]  
BRUNHUBER NMW, 1994, J BIOL CHEM, V269, P16203
[6]  
CAUGHEY WS, 1957, J BIOL CHEM, V224, P5591
[7]  
FISHER HF, 1988, J BIOL CHEM, V263, P11704
[8]  
FISHER HF, 1984, J BIOL CHEM, V259, P4105
[9]   CARBONYL OXYGEN-EXCHANGE EVIDENCE OF IMINE FORMATION IN THE GLUTAMATE-DEHYDROGENASE REACTION AND IDENTIFICATION OF THE OCCULT ROLE OF NADPH [J].
FISHER, HF ;
VISWANATHAN, TS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (09) :2747-2751
[10]   NADPH BINDING INDUCED PROTON IONIZATION AS A CAUSE OF NONLINEAR HEAT-CAPACITY CHANGES IN GLUTAMATE-DEHYDROGENASE [J].
FISHER, HF ;
MANISCALCO, S ;
WOLFE, C ;
SRINIVASAN, R .
BIOCHEMISTRY, 1986, 25 (10) :2910-2915