Transient kinetics of electron-transfer reactions of flavodoxins
- 1 September 1981
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 20 (18), 5124-5131
- https://doi.org/10.1021/bi00521a005
Abstract
Stopped-flow and laser photolysis methods were used to investigate the rates of electron-transfer reactions of fully reduced riboflavin and the 3 oxidation states of Clostridium pasteurianum flavodoxin. Both normal and 7,8-dichloroflavin analogs were studied. Redox reagents included oxygen, ferricyanide, ferric EDTA, and several c-type cytochromes as oxidants and the semiquinone of 5-deazariboflavin as a reductant. The dependence of the rate of oxidation of the semiquinone form of the dichloro analog flavodoxin on oxidant concentration provided clear evidence for the existence of a complex in the reaction pathway. Rate constant comparisons demonstrate the dichloro substitution decreases the rate of flavodoxin semiquinone oxidation by at least 1-2 orders of magnitude. The limiting 1st-order rate constants were dependent on the redox potential of the oxidant, as would be predicted by theory if these were reflecting the actual electron-transfer reaction. Rate constant decreases upon chlorine substitution were also observed for the reduction of both oxidized and semiquinone forms of flavodoxin by deazariboflavin semiquinone. These results, considered in conjunction with the redox potential shift of the flavodoxin produced by the chlorine substitution, provide support for the hypothesis that electron transfer to and from the semiquinone form of the flavodoxin involves direct participation of the dimethylbenzene ring of the flavin. A comparison of oxidation rate constants for free and protein-bound fully reduced flavin suggests that the protein environment does not markedly influence coenzyme reactivity in this oxidation state.This publication has 5 references indexed in Scilit:
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