Analysis of the proteins targeted by CDSP32, a plastidic thioredoxin participating in oxidative stress responses
Autor: | Françoise Eymery, Nicolas Rouhier, Pascal Rey, Jean-Pierre Jacquot, Stéphan Cuiné, Mélanie Broin, Magali Court, Jérôme Garin |
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Rok vydání: | 2004 |
Předmět: |
0106 biological sciences
0303 health sciences biology fungi Mutant RuBisCO Aldolase A food and beverages Cell Biology Plant Science medicine.disease_cause 01 natural sciences Chloroplast 03 medical and health sciences Biochemistry Genetics biology.protein medicine Methionine sulfoxide reductase Thioredoxin Peroxiredoxin Oxidative stress 030304 developmental biology 010606 plant biology & botany |
Zdroj: | The Plant Journal. 41:31-42 |
ISSN: | 1365-313X 0960-7412 |
DOI: | 10.1111/j.1365-313x.2004.02271.x |
Popis: | The chloroplastic drought-induced stress protein of 32 kDa (CDSP32) is a thioredoxin induced by environmental stress conditions. To gain insight into the function of CDSP32, we applied two strategies to analyze its targets. First, using affinity chromatography with an immobilized CDSP32 active site mutant, we identified six plastidic targets of CDSP32. Three of them are involved in photosynthetic processes: ATP-ase gamma-subunit, Rubisco and aldolase. The three others participate in the protection against oxidative damage: two peroxiredoxins, PrxQ and the BAS1 2-Cys peroxiredoxin, and a B-type methionine sulfoxide reductase. Then, we developed a novel strategy to trap targets directly in leaf extracts. The method, based on co-immunoprecipitation using extracts from plants overexpressing Wt CDSP32 or CDSP32 active site mutant, confirmed the interaction in vivo between CDSP32 and the PrxQ and BAS1 peroxiredoxins. We showed that CDSP32 is able to form heterodimeric complexes with PrxQ and that the peroxiredoxin displays CDSP32-dependent peroxidase activity. Under photooxidative stress induced by methyl viologen, plants overexpressing CDSP32 active site mutant exhibit decreased maximal PSII photochemical efficiency and retain much less chlorophyll compared with Wt plants and with plants overexpressing Wt CDSP32. We propose that the increased sensitivity results from trapping in planta of the targets involved in the protection against oxidative damage. We conclude that CDSP32, compared with other plant thioredoxins, is a thioredoxin more specifically involved in plastidic responses against oxidative stress. |
Databáze: | OpenAIRE |
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