DIRECT ELECTROCHEMISTRY OF THE BLUE COPPER PROTEINS PSEUDOAZURIN, PLANTACYANIN, AND STELLACYANIN

被引:31
作者
SAKURAI, T [1 ]
IKEDA, O [1 ]
SUZUKI, S [1 ]
机构
[1] OSAKA UNIV, COLL GEN EDUC, TOYONAKA, OSAKA 560, JAPAN
关键词
D O I
10.1021/ic00348a026
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Direct electrochemistry of three blue copper proteins, Achromobacter cycloclastes IAM 1013 pseudoazurin, Cucumis sativus plantacyanin, and Rhus vernicifera stellacyanin, is achieved at a glassy-carbon electrode over the pH range 5–11 in the absence of mediators and promoters. The formal potentials E°′ for pseudoazurin, plantacyanin, and stellacyanin are 0.28, 0.32, and 0.18 V (vs NHE), respectively, at pH 6.0. These values are identical with those previously determined by the conventional potentiometric titrations. The three blue copper proteins behave as effectively symmetrical redox systems (ipa, ~ ipc) over the pH range 5–11. However, cathodic and anodic wave peak potentials of the three blue copper proteins show diverse pH dependencies, suggesting that an electron might be passed to and from the copper center via different pathways. The oxidation-reduction processes are almost reversible or quasi-reversible at pH < 10, as indicated by the fairly narrow cathodic and anodic peak separations (ΔEp) of 60-90 mV). At pH >10, ΔEp values begin to increase because of the protein structure change, which is partly reflected in the absorption and ESR spectra. © 1990, American Chemical Society. All rights reserved.
引用
收藏
页码:4715 / 4718
页数:4
相关论文
共 54 条
[11]   INTERACTION OF PLASTOCYANIN WITH THE PHOTOSYSTEM-I REACTION CENTER - A KINETIC-STUDY BY FLASH ABSORPTION-SPECTROSCOPY [J].
BOTTIN, H ;
MATHIS, P .
BIOCHEMISTRY, 1985, 24 (23) :6453-6460
[12]   KINETICS AND MECHANISMS OF ELECTRON-TRANSFER BETWEEN BLUE COPPER PROTEINS AND ELECTRONICALLY EXCITED CHROMIUM AND RUTHENIUM POLYPYRIDINE COMPLEXES [J].
BRUNSCHWIG, BS ;
DELAIVE, PJ ;
ENGLISH, AM ;
GOLDBERG, M ;
MAYO, SL ;
SUTIN, N ;
GRAY, HB .
INORGANIC CHEMISTRY, 1985, 24 (23) :3743-3749
[13]   PH-DEPENDENCE OF THE REDUCTION OXIDATION REACTION OF AZURIN WITH CYTOCHROME-C-551 - ROLE OF HISTIDINE-35 OF AZURIN IN ELECTRON-TRANSFER [J].
CORIN, AF ;
BERSOHN, R ;
COLE, PE .
BIOCHEMISTRY, 1983, 22 (08) :2032-2038
[14]   ELECTRON-TRANSFER PATHWAYS IN STELLACYANIN - A POSSIBLE HOMOLOGY WITH PLASTOCYANIN [J].
FARVER, O ;
LICHT, A ;
PECHT, I .
BIOCHEMISTRY, 1987, 26 (23) :7317-7321
[15]   LONG-RANGE INTRAMOLECULAR ELECTRON-TRANSFER IN RHUS-VERNICIFERA STELLACYANIN - A PULSE-RADIOLYSIS STUDY [J].
FARVER, O ;
PECHT, I .
FEBS LETTERS, 1989, 244 (02) :379-382
[16]   IDENTIFICATION OF AN ELECTRON-TRANSFER LOCUS IN PLASTOCYANIN BY CHROMIUM(II) AFFINITY LABELING [J].
FARVER, O ;
PECHT, I .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1981, 78 (07) :4190-4193
[17]   LONG-RANGE INTRAMOLECULAR ELECTRON-TRANSFER IN AZURINS [J].
FARVER, O ;
PECHT, I .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (18) :6968-6972
[18]   RESOLUTION OF 2 DISTINCT ELECTRON-TRANSFER SITES ON AZURIN [J].
FARVER, O ;
BLATT, Y ;
PECHT, I .
BIOCHEMISTRY, 1982, 21 (15) :3556-3561
[19]  
FREEMAN HC, 1981, COORD CHEM, V21, P29
[20]  
Gray H.B., 1981, COPPER PROTEINS, P1