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- W1976160354 abstract "The findings of Okunuki and Wainio are confirmed that on oxygenation of cytochrome oxidase ferrocytochrome c:oxygen oxidoreductase, EC 1.9.3.1) reduced by sodium dithionite a compound with a Soret band at about 428 mμ is formed which differs from ferric oxidase, and that this is not a mixture of ferrous and ferric oxidase. The product does not contain ferrocytochromes a or a3, while it cannot be excluded that it may contain ferricytochrome a.In contrast to Okunuki, no significant difference has been found between this compound and that formed by the action of hydrogen peroxide on cytochrome oxidase reduced by dithionite.The compound gradually reverts to ferric oxidase. This reaction is accelerated by catalase, but not by ferricyanide. It is not converted to ferrous oxidase by evacuation, nor is it converted to the CO-oxidase by carbon monoxide in the absence of reducing substances.These observations support the hypothesis that the compound is a peroxidic, rather than a reversible oxygen compound of cytochrome a3 or of “cytochrome a” and that both cytochromes a and a3 are involved in its formation.There is gome evidence that the reaction with atmospheric oxygen is not due to hydrogen peroxide formed by autoxidation of dithionite. Alternative reaction mechanisms are discussed, by which it may be formed by direct interaction between a labile reversible oxygen compound of cytochrome a3 with ferrocytochrome a." @default.
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- W1976160354 date "1962-06-01" @default.
- W1976160354 modified "2023-09-27" @default.
- W1976160354 title "The indirect oxidation of reduced cytochrome c by polyphenol oxidase" @default.
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- W1976160354 doi "https://doi.org/10.1016/0006-3002(62)90670-4" @default.
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