EPR and ligand field studies of iron superoxide dismutases and iron-substituted manganese superoxide dismutases:: Relationships between electronic structure of the active site and activity

被引:33
作者
Renault, JP
Verchère-Béaur, C
Morgenstern-Badarau, I
Yamakura, F
Gerloch, M
机构
[1] Univ Paris 11, Inst Chim Mol Orsay, Lab Chim Bioorgan & Bioinorgan, F-91405 Orsay, France
[2] Juntendo Univ, Dept Chem, Chiba, Japan
[3] Univ Cambridge, Chem Labs, Cambridge, England
关键词
D O I
10.1021/ic0000451
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The problem of metal selectivity of iron/manganese superoxide dismutases (SODs) is addressed through the electronic structures of active sites using electron paramagnetic resonance and ligand field calculations. Studies of wild-type iron(III) SOD (FeSOD) from Escherichia coli and from Methanobacterium thermoautotrophicum and iron-substituted manganese(III) SOD (Fe(sub)MnSOD) from E. coli and from Serratia marcescens are reported. EPR spectroscopy of wild-type enzymes shows transitions within all three Kramers doublets identified by their g values. From the temperature dependence of the observed transitions, the zero-field splitting is found to be negative, D = -2 +/- 0.2 cm(-1). The electronic structure is typical of a distorted trigonal bipyramid, all the EPR features being reproduced by ligand field analysis. This unique and necessary electronic structure characterizes wild-type enzymes whatever their classification from the amino acid sequence into iron or manganese types, as E. coli FeSOD or M. thermoautotrophicum FeSOD. In iron-substituted manganese SODs, reduced catalytic activity is found. We describe how inhomogeneity of all reported substituted MnSODs might explain the activity decrease. EPR spectra of substituted enzymes show several overlapping components. From simulation of these spectra, one component is identified which shares the same electronic structure of the wild-type FeSODs, with the proportion depending on pH. Ligand field calculations were performed to investigate distortions of the active site geometry which induce variation of the excitation energy of the lowest quartet state. The corresponding coupling between the ground state and the elicited state is found to be maximum in the geometry of the native SODs. We conjecture that such couplings should be considered in the electron-transfer process and in the contribution of the typical electronic structure of FeSOD to the activity.
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页码:2666 / 2675
页数:10
相关论文
共 43 条
[1]   PREDICTION AND INTERPRETATION OF ELECTRONIC-SPECTRA OF TRANSITION-METAL COMPLEXES VIA THE COMBINATION OF MOLECULAR MECHANICS AND ANGULAR OVERLAP MODEL-CALCULATIONS [J].
BERNHARDT, PV ;
COMBA, P .
INORGANIC CHEMISTRY, 1993, 32 (13) :2798-2803
[2]   THE STRUCTURE OF HUMAN MITOCHONDRIAL MANGANESE SUPEROXIDE-DISMUTASE REVEALS A NOVEL TETRAMERIC INTERFACE OF 2 4-HELIX BUNDLES [J].
BORGSTAHL, GEO ;
PARGE, HE ;
HICKEY, MJ ;
BEYER, WF ;
HALLEWELL, RA ;
TAINER, JA .
CELL, 1992, 71 (01) :107-118
[3]  
Bridgeman AJ, 1997, PROG INORG CHEM, V45, P179
[4]   MOLECULAR MECHANICS FOR COORDINATION-COMPLEXES - THE IMPACT OF ADDING D-ELECTRON STABILIZATION ENERGIES [J].
BURTON, VJ ;
DEETH, RJ ;
KEMP, CM ;
GILBERT, PJ .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (32) :8407-8415
[5]   X-RAY STRUCTURE-ANALYSIS OF THE IRON-DEPENDENT SUPEROXIDE-DISMUTASE FROM MYCOBACTERIUM-TUBERCULOSIS AT 2.0-ANGSTROMS RESOLUTION REVEALS NOVEL DIMER-DIMER INTERACTIONS [J].
COOPER, JB ;
MCINTYRE, K ;
BADASSO, MO ;
WOOD, SP ;
ZHANG, Y ;
GARBE, TR ;
YOUNG, D .
JOURNAL OF MOLECULAR BIOLOGY, 1995, 246 (04) :531-544
[6]   Distinct metal environment in Fe-substituted manganese superoxide dismutase provides a structural basis of metal specificity [J].
Edward, RA ;
Whittaker, MM ;
Whittaker, JW ;
Jameson, GB ;
Baker, EN .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (37) :9684-9685
[7]   Crystal structure of Escherichia coli manganese superoxide dismutase at 2.1-Å resolution [J].
Edwards, RA ;
Baker, HM ;
Whittaker, MM ;
Whittaker, JW ;
Jameson, GB ;
Baker, EN .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 1998, 3 (02) :161-171
[8]  
EMPTAGE MH, 1981, FED PROC, V40, P1798
[9]  
Gerloch M., 1983, MAGNETISM LIGAND FIE
[10]   Crystal structure of Y34F mutant human mitochondrial manganese superoxide dismutase and the functional role of tyrosine 34 [J].
Guan, Y ;
Hickey, MJ ;
Borgstahl, GEO ;
Hallewell, RA ;
Lepock, JR ;
O'Connor, D ;
Hsieh, YS ;
Nick, HS ;
Silverman, DN ;
Tainer, JA .
BIOCHEMISTRY, 1998, 37 (14) :4722-4730