A covalent complex between cytochrome c oxidase and Saccharomyces cerevisiae iso-1-cytochrome c (called caa3) has been prepared at low ionic strength. Subunit III Cys-115 of beef heart cytochrome c oxidase cross-links by disulphide bond formation to thionitrobenzoate-modified yeast cytochrome c, a derivative shown to bind into the high-affinity site for substrate. Stopped-flow experiments show that (1) covalently bound yeast cytochrome c cannot donate electrons to cytochrome oxidase, whereas oxidation of exogenously added cytochrome c and electron transfer to cytochrome a are only slightly affected; (2) the steady-state reduction levels of cytochrome c and cytochrome ? in the covalent complex caa3 are higher than those found in the native aa3 enzyme. However, (3) K(m) and V(max) values obtained from the non-linear Eadie-Hofstee plots are very similar in both caa3 and aa3. The results imply that cytochrome c bound to the high-affinity site is not in a configuration optimal for electron transfer.

Probing the high-affinity site of beef heart cytochrome c oxidase by cross-linking

Giuffrè A;
1996

Abstract

A covalent complex between cytochrome c oxidase and Saccharomyces cerevisiae iso-1-cytochrome c (called caa3) has been prepared at low ionic strength. Subunit III Cys-115 of beef heart cytochrome c oxidase cross-links by disulphide bond formation to thionitrobenzoate-modified yeast cytochrome c, a derivative shown to bind into the high-affinity site for substrate. Stopped-flow experiments show that (1) covalently bound yeast cytochrome c cannot donate electrons to cytochrome oxidase, whereas oxidation of exogenously added cytochrome c and electron transfer to cytochrome a are only slightly affected; (2) the steady-state reduction levels of cytochrome c and cytochrome ? in the covalent complex caa3 are higher than those found in the native aa3 enzyme. However, (3) K(m) and V(max) values obtained from the non-linear Eadie-Hofstee plots are very similar in both caa3 and aa3. The results imply that cytochrome c bound to the high-affinity site is not in a configuration optimal for electron transfer.
1996
Istituto di Biologia e Patologia Molecolari - IBPM
cytochrome a
cytochrome c
cytochrome c oxidase
fungal protein
heart enzyme
article
binding affinity
binding site
cattle
complex formation
controlled study
disulfide bond
electron transport
enzyme binding
enzyme conformation
enzyme kinetics
enzyme structure
heart
nonhuman
oxidation
priority journal
protein cross linking
reduction
saccharomyces cerevisiae
Animals
Binding Sites
Cattle
Cross-Linking Reagents
Cytochrome c Group
Cytochromes c
Electron Transport
Electron Transport Complex IV
Kinetics
Myocardium
Saccharomyces cerevisiae
Saccharomyces cerevisiae Proteins
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/241538
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