Functional intermediates in the reaction of membrane-bound cytochrome oxidase with oxygen
Flash photolysis of the membrane-bound cytochrome oxidase/carbon monoxide compound in the presence of oxygen at low temperatures and in the frozen state leads to the formation of three types of intermediates functional in electron transfer in cytochrome oxidase and reduction of oxygen by cytochrome...
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Veröffentlicht in: | The Journal of biological chemistry 1975-12, Vol.250 (24), p.9226-9237 |
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Sprache: | eng |
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Zusammenfassung: | Flash photolysis of the membrane-bound cytochrome oxidase/carbon monoxide compound in the presence of oxygen at low temperatures
and in the frozen state leads to the formation of three types of intermediates functional in electron transfer in cytochrome
oxidase and reduction of oxygen by cytochrome oxidase. The first category (A) does not involve electron transfer to oxygen
between -125 degrees and -105 degrees, and includes oxy compounds which are spectroscopically similar for the completely reduced
oxidase (Cu1+alpha3(2+)-O2) or for the ferricyanide-pretreated oxidase (Cu2+alpha3(3+)-O2). Oxygen is readily dissociated
from compounds of type A. The second category (B) involves oxidation of the heme and the copper moiety of the reduced oxidase
to form a peroxy compound (Cu2+alpha 3(3+)-O2=or Cu2+alpha3(2+)-O2H2) in the temperature range from -105 degrees to -60 degrees.
Above -60 degrees, compounds of type B serve as effective electron acceptors from cytochromes a, c, and c1. The third category
(C) is formed above -100 degrees from mixed valency states of the oxidase obtained by ferricyanide pretreatment, and may involve
higher valency states of the heme iron (Cu2+alpha3(4+)-O2=). These compounds act as electron acceptors for the respiratory
chain and as functional intermediates in oxygen reduction. The remarkable features of cytochrome oxidase are its highly dissociable
"oxy" compound and its extremely effective electron donor reaction which converts this rapidly to tightly bound reduced oxygen
and oxidized oxidase. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1016/S0021-9258(19)40634-0 |