Reactions of dimethylsulfoxide reductase from Rhodobacter capsulatus with dimethyl sulfide and with dimethyl sulfoxide:: Complexities revealed by conventional and stopped-flow spectrophotometry

被引:48
作者
Adams, B
Smith, AT [1 ]
Bailey, S
McEwan, AG
Bray, RC
机构
[1] Univ Sussex, Sch Biol Sci, Brighton BN1 9QG, E Sussex, England
[2] CLRC, Daresbury Lab, Warrington WA4 4AD, Cheshire, England
[3] Univ Queensland, Dept Microbiol, Brisbane, Qld 4072, Australia
[4] Univ Sussex, Sch Chem Phys & Environm Sci, Brighton BN1 9QJ, E Sussex, England
基金
英国惠康基金;
关键词
D O I
10.1021/bi9902034
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
Improved assays for the molybdenum enzyme dimethylsulfoxide reductase (DMSOR) with dimethyl sulfoxide (DMSO) and with dimethyl sulfide (DMS) as substrates are described. Maximum activity was observed at pH 6.5 and below and at 8.3, respectively. Rapid-scan stopped-flow spectrophotometry has been used to investigate the reduction of the enzyme by DMS to a species previously characterized by its UV-visible spectrum [McAlpine, A. S., McEwan, A. G., and Bailey, S. (1998) J. Mel. Biol. 275, 613-623], and its subsequent reoxidation by DMSO. Both these two-electron reactions were faster than enzyme turnover under steady-state conditions, indicating that one-electron reactions with artificial dyes were rate-limiting. Second-order rate constants for the two-electron reduction and reoxidation reactions at pH 5.5 were (1.9 +/- 0.1) x 10(5) and (4.3 +/- 0.3) x 10(2) M-1 s(-1), respectively, while at pH 8.0, the catalytic step was rate-limiting (62 s(-1)). Kinetically, for the two-electron reactions, the enzyme is more effective in DMS oxidation than in DMSO reduction. Reduction of DMSOR by DMS was incomplete below similar to 1 mM DMS but complete at higher concentrations, implying that the enzyme's redox potential is slightly higher than that of the DMS-DMSO couple. In contrast, reoxidation of the DMS-reduced state by DMSO was always incomplete, regardless of the DMSO concentration. Evidence for the existence of a spectroscopically indistinguishable reduced state, which could not be reoxidized by DMSO, was obtained. Brief reaction (less than similar to 15 min) of DMS with DMSOR was fully reversible on removal of the DMS. However, in the presence of excess DMS, a further slow reaction occurred aerobically, but not anaerobically, to yield a stable enzyme form having a lambda(max) at 660 mn. This state (DMSORmod) retained full activity in steady-state assays with DMSO, but was inactive toward DMS. It could however be reconverted to the original resting state by reduction with methyl viologen radical and reoxidation with DMSO. We suggest that in this enzyme form two of the dithiolene ligands of the molybdenum have dissociated and formed a disulfide. The implications of this new species are discussed in relation both to conflicting published information for DMSOR from X-ray crystallography and to previous spectroscopic data for its reduced forms.
引用
收藏
页码:8501 / 8511
页数:11
相关论文
共 53 条
  • [1] BASTIAN NR, 1991, J BIOL CHEM, V266, P45
  • [2] X-ray absorption spectroscopy of dimethylsulfoxide reductase from Rhodobacter capsulatus
    Baugh, PE
    Garner, CD
    Charnock, JM
    Collison, D
    Davies, ES
    McAlpine, AS
    Bailey, S
    Lane, I
    Hanson, GR
    McEwan, AG
    [J]. JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 1997, 2 (05): : 634 - 643
  • [3] MULTIPLE STATES OF THE MOLYBDENUM CENTER OF DIMETHYLSULFOXIDE REDUCTASE FROM RHODOBACTER-CAPSULATUS REVEALED BY ER SPECTROSCOPY
    BENNETT, B
    BENSON, N
    MCEWAN, AG
    BRAY, RC
    [J]. EUROPEAN JOURNAL OF BIOCHEMISTRY, 1994, 225 (01): : 321 - 331
  • [4] DETECTION OF THE OPTICAL BANDS OF MOLYBDENUM(V) IN DMSO REDUCTASE (RHODOBACTER-CAPSULATUS) BY LOW-TEMPERATURE MCD SPECTROSCOPY
    BENSON, N
    FARRAR, JA
    MCEWAN, AG
    THOMSON, AJ
    [J]. FEBS LETTERS, 1992, 307 (02) : 169 - 172
  • [5] Crystal structure of formate dehydrogenase H: Catalysis involving Mo, molybdopterin, selenocysteine, and an Fe4S4 cluster
    Boyington, JC
    Gladyshev, VN
    Khangulov, SV
    Stadtman, TC
    Sun, PD
    [J]. SCIENCE, 1997, 275 (5304) : 1305 - 1308
  • [6] THE INORGANIC BIOCHEMISTRY OF MOLYBDOENZYMES
    BRAY, RC
    [J]. QUARTERLY REVIEWS OF BIOPHYSICS, 1988, 21 (03) : 299 - 329
  • [7] Clark W.M., 1960, OXIDATION REDUCTION
  • [8] A CHEMICAL PREPARATION OF PURE REDUCED VIOLOGENS FOR USE AS BIOMOLECULAR REDUCING REAGENTS
    CORBIN, JL
    WATT, GD
    [J]. ANALYTICAL BIOCHEMISTRY, 1990, 186 (01) : 86 - 89
  • [9] Crystal structure of oxidized trimethylamine N-oxide reductase from Shewanella massilia at 2.5 Å resolution
    Czjzek, M
    Dos Santos, JP
    Pommier, J
    Giordano, G
    Méjean, V
    Haser, R
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1998, 284 (02) : 435 - 447
  • [10] Molecular analysis of the trimethylamine N-oxide (TMAO) reductase respiratory system from a Shewanella species
    Dos Santos, JP
    Iobbi-Nivol, C
    Couillault, C
    Giordano, G
    Méjean, V
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1998, 284 (02) : 421 - 433