Copper(II) and copper(I) complexes with an open-chain N4 Schiff base ligand modeling CuZn superoxide dismutase:: Structural and spectroscopic characterization and kinetics of electron transfer

被引:33
作者
Lange, J
Elias, H
Paulus, H
机构
[1] Tech Univ Darmstadt, Inst Anorgan Chem, D-64287 Darmstadt, Germany
[2] Univ Tubingen, Inst Physiol Chem, D-72076 Tubingen, Germany
关键词
D O I
10.1021/ic000097q
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The structure of the complex [Cu-II(PuPy)](ClO4)(2) (PuPy = L = 1,8-bis(2-pyridyl)-2,7-diazaoctadiene-1,7) and the structure of the corresponding copper(I) complex were determined: In Cu-II(ClO4)2, a model compound with CuZnSOD activity, the unit (CuL2+)-L-II has a tetrahedrally distorted square-planar N-4 coordination geometry. The copper(I) complex with L was found to be dimeric, ((CuL)-L-I)(2)(ClO4)(2).DMF (DMF = N,N-dimethylformamide). The binuclear unit ((CuL)-L-I)(2)(2+) has a helical structure with two ligands L bridging the two copper atoms to provide tetrahedral N-4 coordination of each copper(I). In solutions of ((CuL)-L-I)(2)(ClO4)(2).DMF, solvent-dependent dissociation occurs according to D reversible arrow 2M (D = ((CuL)-L-I)(2)(2+); M = (CuLSx+)-L-I; S = solvent). Stopped-flow spectrophotometry was used to determine the rate constants for the dissociation of the dimer D (kM) and dimerization of the monomer M (k(D)) for S = acetonitrile and DMF. Equilibrium constants K-dim = k(M)/k(D) were determined spectrophotometrically. In aqueous solution, the oxidation of the dimer ((CuL)-L-I)(2)(2+) by Co-III(NH3)(5)Cl2+ and cis- and trans-Co-III(en)(2)Cl-2(+) follows a second-order rate law, rate = k(ox)[((CuL)-L-I)(2)(2+)][Co(III)]. Data for rate constant k(ox) and for the activation parameters Delta H double dagger and Delta S-double dagger are presented. In DMF, the oxidation of ((CuL)-L-I)22+ by Co-III(NH3)(5)Cl2+ occurs via the monomer (CuL)-L-I(DMF)(x)(+) and the dissociation of ((CuL)-L-I)(2)(2+) becomes rate-controlling. The reduction of (CuL2+)-L-II by Ru-II(edta)H2O2- was found to be too fast to be resolved by stopped-flow spectrophotometry. The kinetic results are discussed mechanistically in terms of the redox switch aspects of the system.
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页码:3342 / 3349
页数:8
相关论文
共 27 条
[11]   KINETICS OF SOME OUTER-SPHERE ELECTRON-TRANSFER REACTIONS [J].
ENDICOTT, JF ;
TAUBE, H .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1964, 86 (09) :1686-&
[12]   STRUCTURAL RESEARCH ON STABILIZATION OF OXIDATION STATE 2 IN THIOUREA-COPPER(II) COMPLEXES - CRYSTAL AND MOLECULAR-STRUCTURES OF N,N'-TETRAMETHYLENEBIS-(2-PYRIDINALDIMINE)THIOUREACOPPER(II) PERCHLORATE AND BIS-(2,2'-BIPYRIDYL)THIOUREACOPPER(II) PERCHLORATE [J].
FERRARI, MB ;
CORRADI, AB ;
FAVA, GG ;
PALMIERI, CG ;
NARDELLI, M ;
PELIZZI, C .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1973, 29 (SEP15) :1808-1814
[13]  
GAERTNER A, 1986, TOP CURR CHEM, V132, P1
[14]  
Gisselbrecht J.-P., 1984, NOUV J CHIM, V8, P661
[15]   Structural and functional aspects of metal sites in biology [J].
Holm, RH ;
Kennepohl, P ;
Solomon, EI .
CHEMICAL REVIEWS, 1996, 96 (07) :2239-2314
[16]   THE DI-SCHIFF-BASE OF PYRIDINE-2-ALDEHYDE AND 1,4-DIAMINOBUTANE, A FLEXIBLE CU(I)/CU(II) CHELATOR OF SIGNIFICANT SUPEROXIDE-DISMUTASE MIMETIC ACTIVITY [J].
LINSS, M ;
WESER, U .
INORGANICA CHIMICA ACTA-BIOINORGANIC CHEMISTRY, 1986, 125 (02) :117-121
[17]   A STUDY ON THE STRUCTURE AND PROPERTIES OF A NEW MODEL-COMPOUND OF CU(II)-ZN(II)-SUPEROXIDE DISMUTASE [J].
LUO, QH ;
LU, Q ;
DAI, AB ;
HUANG, LG .
JOURNAL OF INORGANIC BIOCHEMISTRY, 1993, 51 (03) :655-662
[18]  
Miller A.-F., 1997, COMMENTS MOL CELL BI, V9, P1
[19]   2,2'-bis(3-(2-pyridyl)-1-methyltriazolyl)biphenyl: A tetracoordinating wrapping ligand inducing similar skew coordination geometries at copper(I) and copper(II) [J].
Muller, E ;
Bernardinelli, G ;
Reedijk, J .
INORGANIC CHEMISTRY, 1996, 35 (07) :1952-1957
[20]   Structure-function correlation of Cu(II)- and Cu(I)-di-Schiff-base complexes during the catalysis of superoxide dismutation [J].
Müller, J ;
Schübl, D ;
Maichle-Mössmer, C ;
Strähle, J ;
Weser, U .
JOURNAL OF INORGANIC BIOCHEMISTRY, 1999, 75 (01) :63-69