A Study of Ion and Substrate Effects on the Kinetics of Cytochrome C Oxidase

A Study of Ion and Substrate Effects on the Kinetics of Cytochrome C Oxidase
Title A Study of Ion and Substrate Effects on the Kinetics of Cytochrome C Oxidase PDF eBook
Author Eugene T McGuinness
Publisher
Pages 642
Release 1961
Genre
ISBN

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Studies on the cytochrome c oxidase reaction and associated ene...

Studies on the cytochrome c oxidase reaction and associated ene...
Title Studies on the cytochrome c oxidase reaction and associated ene... PDF eBook
Author Lars Christian Petersen
Publisher
Pages 124
Release 1982
Genre
ISBN

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Reactivity Characteristics of Cytochrome C, Cytochrome Oxidase and the Electrostatic Cytochrome C - Cytochrome Oxidase Complex

Reactivity Characteristics of Cytochrome C, Cytochrome Oxidase and the Electrostatic Cytochrome C - Cytochrome Oxidase Complex
Title Reactivity Characteristics of Cytochrome C, Cytochrome Oxidase and the Electrostatic Cytochrome C - Cytochrome Oxidase Complex PDF eBook
Author Bruce Hill
Publisher
Pages
Release 1979
Genre
ISBN

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The mechanism whereby cytochrome £ oxidase catalyses elec-. tron transfer from cytochrome £ to oxygen remains an unsolved problem. Polarographic and spectrophotometric activity measurements of purified, particulate and soluble forms of beef heart mitochondrial cytochrome c oxidase presented in this thesis confirm the following characteristics of the steady-state kinetics with respect to cytochrome £: (1) oxidation of ferrocytochrome c is first order under all conditions. -(2) The relationship between sustrate concentration and velocity is of the Michaelis-Menten type over a limited range of substrate. concentrations at high ionic strength. (3) ~he reaction rate is independent from oxygen concentration until very low levels of oxygen. (4) "Biphasic" kinetic plots of enzyme activity as a function of substrate concentration are found when the range of cytochrome c concentrations is extended; the biphasicity ~ is more apparent in low ionic strength buffer. These results imply two binding sites for cytochrome £ on the oxidase; one of high affinity and one of low affinity with Km values of 1.0 pM and 3.0 pM, respectively, under low ionic strength conditions. (5) Inhibition of the enzymic rate by azide is non-c~mpetitive with respect to cytochrome £ under all conditions indicating an internal electron transfer step, and not binding or dissociation of £ from the enzyme is rate limiting. The "tight" binding of cytochrome '£ to cytochrome c oxidase is confirmed in column chromatographic experiments. The complex has a cytochrome £:oxidase ratio of 1.0 and is dissociated in media of high ionic strength. Stopped-flow spectrophotometric studies of the reduction of equimolar mixtures and complexes of cytochrome c and the oxidase were initiated in an attempt to assess the functional relevance of such a complex. Two alternative routes -for reduction of the oxidase, under conditions where the predominant species is the £ - aa3 complex, are postulated; (i) electron transfer via tightly bound cytochrome £, (ii) electron transfer via a small population of free cytochrome c interacting at the "loose" binding site implied from kinetic studies. It is impossible to conclude, based on the results obtained, which path is responsible for the reduction of cytochrome a. The rate of reduction by various reductants of free cytochrome £ in high and low ionic strength and of cytochrome £ electrostatically bound to cytochrome oxidase was investigated. Ascorbate, a negatively charged reagent, reduces free cytochrome £ with a rate constant dependent on ionic strength, whereas neutral reagents TMPD and DAD were relatively unaffected by ionic strength in their reduction of cytochrome c. The zwitterion cysteine behaved similarly to uncharged reductants DAD and TI~PD in exhibiting only a marginal response to ionic strength. Ascorbate reduces bound cytochrome £ only slowly, but DAD and TMPD reduce bound cytochrome £ rapidly. Reduction of cytochrome £ by DAD and TMPD in the £ - aa3 complex was enhanced lO-fold over DAD reduction of free £ and 4-fold over TMPD reduction of free c. Thus, the importance of ionic strength on the reactivity of cytochrome £ was observed with the general conclusion being that on the cytochrome £ molecule areas for anion (ie. phosphate) binding, ascorbate reduction and complexation to the oxidase overlap. The increased reducibility for bound cytochrome £ by reductants DAD and TMPD supports a suggested conformational change of electrostatically bound c compare.d to free .£. In addition, analysis of electron distribution between cytochromes £ and a in the complex suggest that the midpotential of cytochrome ~ changes with the redox state of the oxidase. Such evidence supports models of the oxidase which suggest interactions within the enzyme (or c - enzyme complex) result in altered midpoint potentials of the redox centers.

Dissertation Abstracts

Dissertation Abstracts
Title Dissertation Abstracts PDF eBook
Author
Publisher
Pages 1596
Release 1962-04
Genre Dissertations, Academic
ISBN

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Abstracts of dissertations and monographs in microform.

A Kinetic and Structural Characterization of the Interactions Between Enzyme Cytochrome C Oxidase and Its Substrate Cytochrome C

A Kinetic and Structural Characterization of the Interactions Between Enzyme Cytochrome C Oxidase and Its Substrate Cytochrome C
Title A Kinetic and Structural Characterization of the Interactions Between Enzyme Cytochrome C Oxidase and Its Substrate Cytochrome C PDF eBook
Author Bernadette Valerie Sampson
Publisher
Pages 558
Release 2000
Genre Cytochrome c
ISBN

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American Doctoral Dissertations

American Doctoral Dissertations
Title American Doctoral Dissertations PDF eBook
Author
Publisher
Pages 760
Release 1989
Genre Dissertation abstracts
ISBN

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Comprehensive Dissertation Index, 1861-1972: Chemistry

Comprehensive Dissertation Index, 1861-1972: Chemistry
Title Comprehensive Dissertation Index, 1861-1972: Chemistry PDF eBook
Author Xerox University Microfilms
Publisher
Pages 960
Release 1973
Genre Dissertations, Academic
ISBN

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