Tyrosine residues serve as proton donor in the catalytic mechanism of epoxide hydrolase from Agrobacterium radiobacter

被引:64
作者
Rink, R [1 ]
Kingma, J [1 ]
Spelberg, JHL [1 ]
Janssen, DB [1 ]
机构
[1] Univ Groningen, Groningen Biomol Sci & Biotechnol Inst, Dept Biochem, NL-9747 AG Groningen, Netherlands
关键词
D O I
10.1021/bi9922392
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
Epoxide hydrolase from Agrobacterium radiobacter catalyzes the hydrolysis of epoxides to their diols via an alkyl-enzyme intermediate. The recently solved X-ray structure of the enzyme shows that two tyrosine residues (Tyr152 and Tyr215) are positioned close to the nucleophile Asp107 in such a way that they can serve as proton donor in the alkylation reaction step. The role of these tyrosines, which are conserved in other epoxide hydrolases, was studied by site-directed mutagenesis. Mutation of Tyr215 to Phe and Ala and mutation of Tyr152 to Phe resulted in mutant enzymes of which the k(cat) values were only 2-4-fold lower than for wild-type enzyme, whereas the K-m values for the (R)-enantiomers of styrene oxide and p-nitrostyrene oxide were 3 orders of magnitude higher than the K-m values of wildtype enzyme, showing that the alkylation half-reaction is severely affected by the mutations. Pre-steady-state analysis of the conversion of (R)-styrene oxide by the Y215F and Y215A mutants showed that the 1000-fold elevated K-m values were mainly caused by a 15-40-fold increase in K-S and a 20-fold reduction in the rate of alkylation. The rates of hydrolysis of the alkyl-enzyme intermediates were not significantly affected by the mutations. The double mutant Y152F+Y215F showed only a low residual activity for (R)-styrene oxide, with a k(cat)/K-m value that was 6 orders of magnitude lower than with wild-type enzyme and 3 orders of magnitude lower than with the single tyrosine mutants. This indicates that the effects of the mutations were cumulative. The side chain of Gln134 is positioned in the active site of the X-ray structure of epoxide hydrolase. Mutation of Gln134 to Ala resulted in an active enzyme with slightly altered steady-state kinetic parameters compared to wild-type enzyme, indicating that Gln134 is not essential for catalysis and that the side chain of Gln134 mimics bound substrate. Based upon this observation, the inhibitory potential of various unsubstituted amides was tested, resulting in the identification of phenylacetamide as a competitive inhibitor with an inhibition constant of 30 mu M.
引用
收藏
页码:5600 / 5613
页数:14
相关论文
共 33 条
  • [1] Synthesis of enantiopure epoxides through biocatalytic approaches
    Archelas, A
    Furstoss, R
    [J]. ANNUAL REVIEW OF MICROBIOLOGY, 1997, 51 : 491 - 525
  • [2] Epoxide hydrolases as asymmetric catalysts
    Archer, IVJ
    [J]. TETRAHEDRON, 1997, 53 (46) : 15617 - 15662
  • [3] Detoxification of environmental mutagens and carcinogens: Structure, mechanism, and evolution of liver epoxide hydrolase
    Argiriadi, MA
    Morisseau, C
    Hammock, BD
    Christianson, DW
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (19) : 10637 - 10642
  • [4] ENZYME-CATALYZED DETOXICATION REACTIONS - MECHANISMS AND STEREOCHEMISTRY
    ARMSTRONG, RN
    [J]. CRC CRITICAL REVIEWS IN BIOCHEMISTRY, 1987, 22 (01): : 39 - 88
  • [5] GENE EVOLUTION OF EPOXIDE HYDROLASES AND RECOMMENDED NOMENCLATURE
    BEETHAM, JK
    GRANT, D
    ARAND, M
    GARBARINO, J
    KIYOSUE, T
    PINOT, F
    OESCH, F
    BELKNAP, WR
    SHINOZAKI, K
    HAMMOCK, BD
    [J]. DNA AND CELL BIOLOGY, 1995, 14 (01) : 61 - 71
  • [6] TYROSINE-48 IS THE PROTON DONOR AND HISTIDINE-110 DIRECTS SUBSTRATE STEREOCHEMICAL SELECTIVITY IN THE REDUCTION REACTION OF HUMAN ALDOSE REDUCTASE - ENZYME-KINETICS AND CRYSTAL-STRUCTURE OF THE Y48H MUTANT ENZYME
    BOHREN, KM
    GRIMSHAW, CE
    LAI, CJ
    HARRISON, DH
    RINGE, D
    PETSKO, GA
    GABBAY, KH
    [J]. BIOCHEMISTRY, 1994, 33 (08) : 2021 - 2032
  • [7] Expression and characterization of the recombinant juvenile hormone epoxide hydrolase (JHEH) from Manduca sexta
    Debernard, S
    Morisseau, C
    Severson, TF
    Feng, L
    Wojtasek, H
    Prestwich, GD
    Hammock, BD
    [J]. INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY, 1998, 28 (5-6) : 409 - 419
  • [8] Fersht A., 1985, ENZYME STRUCTURE MEC
  • [9] Gutfreund H., 1995, Kinetics for the Life Sciences: Receptors, Transmitters and Catalysts
  • [10] CHARACTERIZATION OF THE EPOXIDE HYDROLASE FROM AN EPICHLOROHYDRIN-DEGRADING PSEUDOMONAS-SP
    JACOBS, MHJ
    VANDENWIJNGAARD, AJ
    PENTENGA, M
    JANSSEN, DB
    [J]. EUROPEAN JOURNAL OF BIOCHEMISTRY, 1991, 202 (03): : 1217 - 1222