Quantitative reevaluation of the redox active sites of crystalline bovine heart cytochrome c oxidase.
نویسندگان
چکیده
Approximately 30% of the iron contained in a bovine heart cytochrome c oxidase preparation was removed by crystallization, giving a molecular extinction coefficient 1.25-1.4 times higher than those reported thus far. Six electron equivalents provided by dithionite were required for complete reduction of the crystalline cytochrome c oxidase preparation. The fully reduced enzyme was oxidized with 4 oxidation equivalents provided by molecular oxygen, giving an absorption spectrum slightly, but significantly, different from that of the original fully oxidized form. Four electron equivalents were required for complete reduction of the O(2)-oxidized enzyme. The O(2)-oxidized form, when exposed to excess amounts of O(2), was converted to the original oxidized form which required 6 electrons for complete reduction. A slow reduction of the O(2)-oxidized form without any external reductant added indicates the existence of internal electron donors for heme irons in the enzyme. These results suggest that the 2 extra oxidation equivalents in the original oxidized form, compared with the O(2)-oxidized form, are due to a bound peroxide produced by O(2) and electrons from the internal donors, consistently with a peroxide at the O(2) reduction site in the crystal structure of the enzyme (Yoshikawa, S., Shinzawa-Itoh, K. , Nakashima, R., Yaono, R., Yamashita, E., Inoue, N., Yao, M., Fei, M. J., Peters Libeu, C., Mizushima, T., Yamaguchi, H., Tomizaki, T., and Tsukihara, T. (1998) Science 280, 1723-1729).
منابع مشابه
Cytochrome c oxidase.
Within the past year, the structures of the cytochrome c oxidase from the soil bacterium Paracoccus denitrificans and of the metal centers of the cytochrome c oxidase from bovine heart mitochondria, both determined at 2.8 A resolution by X-ray crystallography, have been reported. The structures form a basis for understanding the mechanism of this redox-coupled transmembrane proton pump, which i...
متن کاملImproved X-ray structures of bovine heart cytochrome c oxidase reveal redox-driven proton active transports by Mg2+-containing water cluster
[1] B. Kadenbach, R. Ramzan, L. Wen, S. Vogt, New extension of the Mitchell Theory for oxidative phosphorylation in mitochondria of living organisms, Biochim. Biophys. Acta. 1800 (2010) 205–12. [2] R. Ramzan, K. Staniek, B. Kadenbach, S. Vogt, Mitochondrial respiration and membrane potential are regulated by the allosteric ATP-inhibition of cytochrome c oxidase, Biochim. Biophys. Acta. 1797 (20...
متن کاملRedox-coupled crystal structural changes in bovine heart cytochrome c oxidase.
Crystal structures of bovine heart cytochrome c oxidase in the fully oxidized, fully reduced, azide-bound, and carbon monoxide-bound states were determined at 2.30, 2.35, 2.9, and 2.8 angstrom resolution, respectively. An aspartate residue apart from the O2 reduction site exchanges its effective accessibility to the matrix aqueous phase for one to the cytosolic phase concomitantly with a signif...
متن کاملInfrared evidence of azide binding to iron, copper, and non-metal sites in heart cytochrome c oxidase.
Interactions of azide ion with bovine heart cytochrome c oxidase (CcO) at five redox levels (IV) to (0), obtained by zero to four electron reduction of fully oxidized enzyme CcO(IV), were monitored by infrared and visible/Soret spectra. Partially reduced CcO gave three azide asymmetric stretch band at 2040, 2016, and 2004 cm-1 for CcO(III)N3 and two at 2040 and 2016 cm-1 for CcO(II)N3 and CcO(I...
متن کاملProkaryotic models for mitochondrial cytochrome c oxidase.
992 Introduction Cytochrome c oxidase is a fascinating enzyme that has attracted the attention of numerous researchers over the past two decades [ 1-61. The enzyme catalyses the one-electron oxidation of cytochrome c and the four-electron reduction of molecular oxygen to water. In doing so, the enzyme electrogenically pumps protons across the inner mitochondrial membrane, thus generating a tran...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Journal of biological chemistry
دوره 274 47 شماره
صفحات -
تاریخ انتشار 1999