Halide-stabilizing residues of haloalkane dehalogenases studied by quantum mechanic calculations and site-directed mutagenesis

被引:58
作者
Bohac, M
Nagata, Y
Prokop, Z
Prokop, M
Monincová, M
Tsuda, M
Koca, J
Damborsky, J
机构
[1] Masaryk Univ, Natl Ctr Biomol Res, CS-61137 Brno, Czech Republic
[2] Tohoku Univ, Grad Sch Life Sci, Sendai, Miyagi 9808577, Japan
关键词
D O I
10.1021/bi026427v
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
Haloalkane dehalogenases catalyze cleavage of the carbon-halogen bond in halogenated aliphatic compounds, resulting in the formation of an alcohol, a halide, and a proton as the reaction products. Three structural features of haloalkane dehalogenases are essential for their catalytic performance: (i) a catalytic triad, (ii) an oxyanion hole, and (iii) the halide-stabilizing residues. Halide-stabilizing residues are not structurally conserved among different haloalkane dehalogenases. The level of stabilization of the transition state structure of S(N)2 reaction and halide ion provided by each of the active Site residues in the enzymes DhlA, LinB, and DhaA was quantified by quantum mechanic Calculations. The residues that significantly stabilize the halide ion were assigned as the primary (essential) or the secondary (less important) halide-stabilizing residues. Site-directed mutagenesis was conducted with LinB enzyme to confirm location of its primary halide-stabilizing residues. Asn38Asp, Asn38Glu. Asn38Phe, Asn38Gln, Trp109Leu, Phe151Leu, Phe151Trp, Phe151Tyr, and Phe169Leu mutants of LinB were constructed. purified, and kinetically characterized. The following active site residues were classified as the primary halide-stabilizing residues: Trp125 and Trp175 of DhIA; Asn38 and Trp109 of LinB, and Asn41 and Trp107 of DhaA. All these residues make a hydrogen bond with the halide ion released from the Substrate molecule, and their substitution results in enzymes with significantly modified catalytic properties, The following active site residues were classified as the secondary halide-stabilizing residues: Phe172, Pro223, and Val226 of DhIA; Trp207, Pro208, and Ile211 of LinB; and Phe205, Pro206, and Ile209 of DhaA, The differences in the halide stabilizing residues of three haloalkane dehalogenases are discussed in the light of molecular adaptation of these enzymes to their substrates.
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页码:14272 / 14280
页数:9
相关论文
共 59 条
[1]  
Arnold GE, 1997, BIOMACROMOLECULES: FROM 3-D STRUCTURE TO APPLICATIONS, P215
[2]   Biodegradation of 1,2,3-trichloropropane through directed evolution and heterologous expression of a haloalkane dehalogenase gene [J].
Bosma, T ;
Damborsky, J ;
Stucki, G ;
Janssen, DB .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2002, 68 (07) :3582-3587
[3]  
CERNOHORSKY M, 1996, COMPUT CHEM, V21, P35
[4]   A molecular modeling study of the catalytic mechanism of haloalkane dehalogenase .1. Quantum chemical study of the first reaction step [J].
Damborsky, J ;
Kuty, M ;
Nemec, M ;
Koca, J .
JOURNAL OF CHEMICAL INFORMATION AND COMPUTER SCIENCES, 1997, 37 (03) :562-568
[5]   Computational site-directed mutagenesis of haloalkane dehalogenase in position 172 [J].
Damborsky, J ;
Bohác, M ;
Prokop, M ;
Kuty, M ;
Koca, J .
PROTEIN ENGINEERING, 1998, 11 (10) :901-907
[6]   Analysis of the reaction mechanism and substrate specificity of haloalkane dehalogenases by sequential and structural comparisons [J].
Damborsky, J ;
Koca, J .
PROTEIN ENGINEERING, 1999, 12 (11) :989-998
[7]   TRITON: graphic software for rational engineering of enzymes [J].
Damborsky, J ;
Prokop, M ;
Koca, J .
TRENDS IN BIOCHEMICAL SCIENCES, 2001, 26 (01) :71-73
[8]   Quantitative structure-function relationships of the single-point mutants of haloalkane dehalogenase: A multivariate approach [J].
Damborsky, J .
QUANTITATIVE STRUCTURE-ACTIVITY RELATIONSHIPS, 1997, 16 (02) :126-135
[9]   Quantitative structure-function and structure-stability relationships of purposely modified proteins [J].
Damborsky, J .
PROTEIN ENGINEERING, 1998, 11 (01) :21-30
[10]   CRYSTAL-STRUCTURE OF HALOALKANE DEHALOGENASE - AN ENZYME TO DETOXIFY HALOGENATED ALKANES [J].
FRANKEN, SM ;
ROZEBOOM, HJ ;
KALK, KH ;
DIJKSTRA, BW .
EMBO JOURNAL, 1991, 10 (06) :1297-1302