Identification of the active site acid/base catalyst in a bacterial fumarate reductase: A kinetic and crystallographic study

被引:62
作者
Doherty, MK
Pealing, SL
Miles, CS
Moysey, R
Taylor, P
Walkinshaw, MD
Reid, GA
Chapman, SK
机构
[1] Univ Edinburgh, Dept Chem, Edinburgh EH9 3JJ, Midlothian, Scotland
[2] Univ Edinburgh, Inst Cell & Mol Biol, Edinburgh EH9 3JR, Midlothian, Scotland
关键词
D O I
10.1021/bi000871l
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
The active sites of respiratory fumarate reductases are highly conserved, indicating a common mechanism of action involving hydride and proton transfer. Evidence from the X-ray structures of substrate-bound fumarate reductases, including that for the enzyme from Shewanella frigidimarina [Taylor, P., Pealing, S. L., Reid, G, A., Chapman, S. K., and Walkinshaw, M. D. (1999) Nat. Struct. Biol. 6, 1108-1112], indicates that the substrate is well positioned to accept a hydride from N5 of the FAD. However, the identity of the proton donor has been the subject of recent debate and has been variously proposed to be (using numbering for the S, frigidimarina enzyme) His365, His504, and Arg402. We have used site-directed mutagenesis to examine the roles of these residues in the S. frigidimarina enzyme. The H365A and H504A mutant enzymes exhibited lower k(cat) values than the wild-type enzyme but only by factors of 3-15, depending on pH. This, coupled with the increase in K-m observed for these enzymes, indicates that His365 and His504 are involved in Michaelis complex formation and are not essential catalytic residues. In fact, examination of the crystal structure of S. frigidimarina fumarate reductase has led to the proposal that Arg402 is the only plausible active site acid. Consistent with this proposal, we report that the R402A mutant enzyme has no detectable fumarate reductase activity. The crystal structure of the H365A mutant enzyme shows that, in addition to the replacement at position 365, there have been some adjustments in the positions of active site residues, In particular, the observed change in the orientation of the Arg402 side chain could account for the decrease in k(cat) seen with the H365A enzyme. These results demonstrate that an active site arginine and not a histidine residue is the proton donor for fumarate reduction.
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页码:10695 / 10701
页数:7
相关论文
共 24 条
[1]  
Bamford V, 1999, NAT STRUCT BIOL, V6, P1104
[2]  
CHAPMAN SK, 1999, FLAVINS FLAVOPROTEIN, P105
[3]   Physiological function and regulation of flavocytochrome c3, the soluble fumarate reductase from Shewanella putrefaciens NCIMB 400 [J].
Gordon, EHJ ;
Pealing, SL ;
Chapman, SK ;
Ward, FB ;
Reid, GA .
MICROBIOLOGY-SGM, 1998, 144 :937-945
[4]   Structure of the Escherichia coli fumarate reductase respiratory complex [J].
Iverson, TM ;
Luna-Chavez, C ;
Cecchini, G ;
Rees, DC .
SCIENCE, 1999, 284 (5422) :1961-1966
[5]   WOLINELLA-SUCCINOGENES FUMARATE REDUCTASE CONTAINS A DIHEME CYTOCHROME-B [J].
KORTNER, C ;
LAUTERBACH, F ;
TRIPIER, D ;
UNDEN, G ;
KROGER, A .
MOLECULAR MICROBIOLOGY, 1990, 4 (05) :855-860
[6]  
KUNKEL TA, 1987, METHOD ENZYMOL, V154, P367
[7]   Structure of fumarate reductase from Wolinella succinogenes at 2.2 Å resolution [J].
Lancaster, CRD ;
Kröger, A ;
Auer, M ;
Michel, H .
NATURE, 1999, 402 (6760) :377-385
[8]  
Leys D, 1999, NAT STRUCT BIOL, V6, P1113
[9]  
Macheroux P, 1999, METH MOL B, V131, P1
[10]   SPECIFICITY OF THE PROTEIN SECRETORY APPARATUS - SECRETION OF THE HEAT-LABILE ENTEROTOXIN-B SUBUNIT PENTAMERS BY DIFFERENT SPECIES OF GRAM(-) BACTERIA [J].
MICHEL, LO ;
SANDKVIST, M ;
BAGDASARIAN, M .
GENE, 1995, 152 (01) :41-45