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Distinct electron transfer from ferredoxin-thioredoxin reductase to multiple thioredoxin isoforms in chloroplasts.
- Source :
-
The Biochemical journal [Biochem J] 2017 Apr 04; Vol. 474 (8), pp. 1347-1360. Date of Electronic Publication: 2017 Apr 04. - Publication Year :
- 2017
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Abstract
- Thiol-based redox regulation is considered to support light-responsive control of various chloroplast functions. The redox cascade via ferredoxin-thioredoxin reductase (FTR)/thioredoxin (Trx) has been recognized as a key to transmitting reducing power; however, Arabidopsis thaliana genome sequencing has revealed that as many as five Trx subtypes encoded by a total of 10 nuclear genes are targeted to chloroplasts. Because each Trx isoform seems to have a distinct target selectivity, the electron distribution from FTR to multiple Trxs is thought to be the critical branch point for determining the consequence of chloroplast redox regulation. In the present study, we aimed to comprehensively characterize the kinetics of electron transfer from FTR to 10 Trx isoforms. We prepared the recombinant FTR protein from Arabidopsis in the heterodimeric form containing the Fe-S cluster. By reconstituting the FTR/Trx system in vitro , we showed that FTR prepared here was enzymatically active and suitable for uncovering biochemical features of chloroplast redox regulation. A series of redox state determinations using the thiol-modifying reagent, 4-acetamido-4'-maleimidylstilbene-2,2'-disulfonate, indicated that all chloroplast Trx isoforms are commonly reduced by FTR; however, significantly different efficiencies were evident. These differences were apparently correlated with the distinct midpoint redox potentials among Trxs. Even when the experiments were performed under conditions of hypothetical in vivo stoichiometry of FTR and Trxs, a similar trend in distinguishable electron transfers was observed. These data highlight an aspect of highly organized circuits in the chloroplast redox regulation network.<br /> (© 2017 The Author(s); published by Portland Press Limited on behalf of the Biochemical Society.)
- Subjects :
- Arabidopsis enzymology
Arabidopsis metabolism
Arabidopsis Proteins chemistry
Arabidopsis Proteins genetics
Biocatalysis drug effects
Catalytic Domain
Chloroplast Thioredoxins chemistry
Chloroplast Thioredoxins genetics
Chloroplasts enzymology
Iron-Sulfur Proteins chemistry
Iron-Sulfur Proteins genetics
Oxidation-Reduction
Oxidoreductases chemistry
Oxidoreductases genetics
Peptide Fragments chemistry
Peptide Fragments genetics
Peptide Fragments metabolism
Protein Conformation
Protein Interaction Domains and Motifs
Protein Isoforms chemistry
Protein Isoforms genetics
Protein Isoforms metabolism
Protein Subunits chemistry
Protein Subunits genetics
Protein Subunits metabolism
Recombinant Fusion Proteins chemistry
Recombinant Fusion Proteins metabolism
Recombinant Proteins chemistry
Recombinant Proteins metabolism
Stilbenes pharmacology
Sulfhydryl Reagents pharmacology
Sulfonic Acids pharmacology
Arabidopsis Proteins metabolism
Chloroplast Thioredoxins metabolism
Chloroplasts metabolism
Electron Transport drug effects
Iron-Sulfur Proteins metabolism
Models, Molecular
Oxidoreductases metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1470-8728
- Volume :
- 474
- Issue :
- 8
- Database :
- MEDLINE
- Journal :
- The Biochemical journal
- Publication Type :
- Academic Journal
- Accession number :
- 28246333
- Full Text :
- https://doi.org/10.1042/BCJ20161089