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  4. Redox Signaling in Chloroplasts: Cleavage of Disulfides by an Iron-Sulfur Cluster

Redox Signaling in Chloroplasts: Cleavage of Disulfides by an Iron-Sulfur Cluster

Author(s)
Dai, Shaodong
Schwendtmayer Cristina
Schürmann, Peter
Ramaswamy, S
Eklund, Hans
Date issued
2000
In
Science, American Association for the Advancement of Science
Vol
287
No
5453
From page
655
To page
658
Abstract
Light generates reducing equivalents in chloroplasts that are used not only for carbon reduction, but also for the regulation of the activity of chloroplast enzymes by reduction of regulatory disulfides via the ferredoxin:thioredoxin reductase (FTR) system. FTR, the key electron/thiol transducer enzyme in this pathway, is unique in that it can reduce disulfides by an iron-sulfur cluster, a property that is explained by the tight contact of its active-site disulfide and the iron-sulfur center. The thin, flat FTR molecule makes the two-electron reduction possible by forming on one side a mixed disulfide with thioredoxin and by providing on the opposite side access to ferredoxin for delivering electrons.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/65617
DOI
10.1126/science.287.5453.655
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Shaodong_Dai-Redox_signaling_in_chloroplasts-20130731.pdf

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715.42 KB

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