Ferredoxin-thioredoxin reductase: A catalytically active dithiol group links photoreduced ferredoxin to thioredoxin functional in photosynthetic enzyme regulation

The mechanism by which the ferredoxin-thioredoxin system activates the target enzyme, NADP-malate dehydrogenase, was investigated by analyzing the sulfhydryl status of individual protein components with [ 14C]iodoacetate and monobromobimane. The data indicate that ferredoxin-thioredoxin reductase (F...

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Veröffentlicht in:Arch. Biochem. Biophys.; (United States) 1987-07, Vol.256 (1), p.372-380
Hauptverfasser: Droux, M., Miginiac-Maslow, M., Jacquot, J.-P., Gadal, P., Crawford, N.A., Kosower, N.S., Buchanan, B.B.
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Sprache:eng
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Zusammenfassung:The mechanism by which the ferredoxin-thioredoxin system activates the target enzyme, NADP-malate dehydrogenase, was investigated by analyzing the sulfhydryl status of individual protein components with [ 14C]iodoacetate and monobromobimane. The data indicate that ferredoxin-thioredoxin reductase (FTR)—an iron-sulfur enzyme present in oxygenic photosynthetic organisms—is the first member of a thiol chain that links light to enzyme regulation. FTR possesses a catalytically active dithiol group localized on the 13 kDa (similar) subunit, that occurs in all species investigated and accepts reducing equivalents from photoreduced ferredoxin and transfers them stoichiometrically to the disulfide form of thioredoxin m. The reduced thioredoxin m, in turn, reduces NADP-malate dehydrogenase, thereby converting it from an inactive (S-S) to an active (SH) form. The means by which FTR is able to combine electrons (from photoreduced ferredoxin) with protons (from the medium) to reduce its active disulfide group remains to be determined.
ISSN:0003-9861
1096-0384
DOI:10.1016/0003-9861(87)90458-9