Plant peroxiredoxins

Dietz K-J (2003)
ANNUAL REVIEW OF PLANT BIOLOGY 54: 93-107.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Abstract / Bemerkung
Peroxiredoxins (Prxs) are abundant low-efficiency peroxidases located in distinct cell compartments including the chloroplast and mitochondrion. They are grouped into four clans based on their structural and biochemical properties. The catalytic center contains a cysteinyl residue that reduces diverse peroxides and is regenerated via intramolecular or intermolecular thiol-disulfide-reactions and finally by electron donors such as thioredoxins and glutaredoxins. Prxs show a complex regulation by endogenous and environmental stimuli at both the transcript and protein levels. In addition to their role in antioxidant defense in photosynthesis, respiration, and stress response, they may also be involved in modulating redox signaling during development and adaptation.
Stichworte
antioxidant defense; gene family; peroxide; redox signaling; chloroplast
Erscheinungsjahr
2003
Zeitschriftentitel
ANNUAL REVIEW OF PLANT BIOLOGY
Band
54
Seite(n)
93-107
ISSN
0
Page URI
https://pub.uni-bielefeld.de/record/1610392

Zitieren

Dietz K-J. Plant peroxiredoxins. ANNUAL REVIEW OF PLANT BIOLOGY. 2003;54:93-107.
Dietz, K. - J. (2003). Plant peroxiredoxins. ANNUAL REVIEW OF PLANT BIOLOGY, 54, 93-107. https://doi.org/10.1146/ammurev.arplant.54.031902.134934
Dietz, Karl-Josef. 2003. “Plant peroxiredoxins”. ANNUAL REVIEW OF PLANT BIOLOGY 54: 93-107.
Dietz, K. - J. (2003). Plant peroxiredoxins. ANNUAL REVIEW OF PLANT BIOLOGY 54, 93-107.
Dietz, K.-J., 2003. Plant peroxiredoxins. ANNUAL REVIEW OF PLANT BIOLOGY, 54, p 93-107.
K.-J. Dietz, “Plant peroxiredoxins”, ANNUAL REVIEW OF PLANT BIOLOGY, vol. 54, 2003, pp. 93-107.
Dietz, K.-J.: Plant peroxiredoxins. ANNUAL REVIEW OF PLANT BIOLOGY. 54, 93-107 (2003).
Dietz, Karl-Josef. “Plant peroxiredoxins”. ANNUAL REVIEW OF PLANT BIOLOGY 54 (2003): 93-107.

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Lamkemeyer P, Laxa M, Collin V, Li W, Finkemeier I, Schöttler MA, Holtkamp V, Tognetti VB, Issakidis-Bourguet E, Kandlbinder A, Weis E, Miginiac-Maslow M, Dietz KJ., Plant J 45(6), 2006
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Molecular and functional characterization of sulfiredoxin homologs from higher plants.
Liu XP, Liu XY, Zhang J, Xia ZL, Liu X, Qin HJ, Wang DW., Cell Res 16(3), 2006
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The early responses of Arabidopsis thaliana cells to cadmium exposure explored by protein and metabolite profiling analyses.
Sarry JE, Kuhn L, Ducruix C, Lafaye A, Junot C, Hugouvieux V, Jourdain A, Bastien O, Fievet JB, Vailhen D, Amekraz B, Moulin C, Ezan E, Garin J, Bourguignon J., Proteomics 6(7), 2006
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Plant thioredoxins are key actors in the oxidative stress response.
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Cloning, overexpression, purification and preliminary crystallographic studies of a mitochondrial type II peroxiredoxin from Pisum sativum.
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Concepts and approaches towards understanding the cellular redox proteome.
Ströher E, Dietz KJ., Plant Biol (Stuttg) 8(4), 2006
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The Quest to Understand the Basis and Mechanisms that Control Expression of Introduced Transgenes in Crop Plants.
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The C-type Arabidopsis thioredoxin reductase ANTR-C acts as an electron donor to 2-Cys peroxiredoxins in chloroplasts.
Moon JC, Jang HH, Chae HB, Lee JR, Lee SY, Jung YJ, Shin MR, Lim HS, Chung WS, Yun DJ, Lee KO, Lee SY., Biochem Biophys Res Commun 348(2), 2006
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Rice NTRC is a high-efficiency redox system for chloroplast protection against oxidative damage.
Pérez-Ruiz JM, Spínola MC, Kirchsteiger K, Moreno J, Sahrawy M, Cejudo FJ., Plant Cell 18(9), 2006
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Substrate specificity of rat sera IgG antibodies with peroxidase and oxidoreductase activities.
Ikhmyangan EN, Vasilenko NL, Sinitsina OI, Buneva VN, Nevinsky GA., J Mol Recognit 19(5), 2006
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Protein-protein interactions within peroxiredoxin systems.
Noguera-Mazon V, Krimm I, Walker O, Lancelin JM., Photosynth Res 89(2-3), 2006
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Thioredoxins, glutaredoxins, and glutathionylation: new crosstalks to explore.
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The Prx Q protein of Arabidopsis thaliana is a member of the luminal chloroplast proteome.
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Proteomic responses of rice young panicles to salinity.
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Cytosolic ascorbate peroxidase 1 is a central component of the reactive oxygen gene network of Arabidopsis.
Davletova S, Rizhsky L, Liang H, Shengqiang Z, Oliver DJ, Coutu J, Shulaev V, Schlauch K, Mittler R., Plant Cell 17(1), 2005
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Redox regulation: a broadening horizon.
Buchanan BB, Balmer Y., Annu Rev Plant Biol 56(), 2005
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Making the life of heavy metal-stressed plants a little easier.
Gratao PL, Polle A, Lea PJ, Azevedo RA., Functional plant biology : FPB. 32(6), 2005
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Proteome analysis of sugar beet leaves under drought stress.
Hajheidari M, Abdollahian-Noghabi M, Askari H, Heidari M, Sadeghian SY, Ober ES, Salekdeh GH., Proteomics 5(4), 2005
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Redox regulation and modification of proteins controlling chloroplast gene expression.
Pfannschmidt T, Liere K., Antioxid Redox Signal 7(5-6), 2005
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Tocopherols protect Synechocystis sp. strain PCC 6803 from lipid peroxidation.
Maeda H, Sakuragi Y, Bryant DA, Dellapenna D., Plant Physiol 138(3), 2005
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IgG antibodies with peroxidase-like activity from the sera of healthy Wistar rats.
Ikhmyangan EN, Vasilenko NL, Buneva VN, Nevinsky GA., FEBS Lett 579(18), 2005
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Proteomics viewed on stress response of thermophilic bacterium Bacillus stearothermophilus TLS33.
Topanurak S, Sinchaikul S, Phutrakul S, Sookkheo B, Chen ST., Proteomics 5(14), 2005
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Crystal structure of an archaeal peroxiredoxin from the aerobic hyperthermophilic crenarchaeon Aeropyrum pernix K1.
Mizohata E, Sakai H, Fusatomi E, Terada T, Murayama K, Shirouzu M, Yokoyama S., J Mol Biol 354(2), 2005
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Vitamin E protects against photoinhibition and photooxidative stress in Arabidopsis thaliana.
Havaux M, Eymery F, Porfirova S, Rey P, Dörmann P., Plant Cell 17(12), 2005
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Glutathione homeostasis and redox-regulation by sulfhydryl groups.
Meyer AJ, Hell R., Photosynth Res 86(3), 2005
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The Arabidopsis cytosolic thioredoxin h5 gene induction by oxidative stress and its W-box-mediated response to pathogen elicitor.
Laloi C, Mestres-Ortega D, Marco Y, Meyer Y, Reichheld JP., Plant Physiol 134(3), 2004
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Poplar peroxiredoxin Q. A thioredoxin-linked chloroplast antioxidant functional in pathogen defense.
Rouhier N, Gelhaye E, Gualberto JM, Jordy MN, De Fay E, Hirasawa M, Duplessis S, Lemaire SD, Frey P, Martin F, Manieri W, Knaff DB, Jacquot JP., Plant Physiol 134(3), 2004
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The thioredoxin h system of higher plants.
Gelhaye E, Rouhier N, Jacquot JP., Plant Physiol Biochem 42(4), 2004
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New thioredoxin targets in the unicellular photosynthetic eukaryote Chlamydomonas reinhardtii.
Lemaire SD, Guillon B, Le Maréchal P, Keryer E, Miginiac-Maslow M, Decottignies P., Proc Natl Acad Sci U S A 101(19), 2004
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Cadmium toxicity to barley (Hordeum vulgare) as affected by varying Fe nutritional status.
Sharma SS, Kaul S, Metwally A, Goyal KC, Finkemeier I, Dietz KJ., Plant Sci 166(5), 2004
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Vitamin E is essential for seed longevity and for preventing lipid peroxidation during germination.
Sattler SE, Gilliland LU, Magallanes-Lundback M, Pollard M, DellaPenna D., Plant Cell 16(6), 2004
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Specific changes in the Arabidopsis proteome in response to bacterial challenge: differentiating basal and R-gene mediated resistance.
Jones AM, Thomas V, Truman B, Lilley K, Mansfield J, Grant M., Phytochemistry 65(12), 2004
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Characterization of plastidial thioredoxins from Arabidopsis belonging to the new y-type.
Collin V, Lamkemeyer P, Miginiac-Maslow M, Hirasawa M, Knaff DB, Dietz KJ, Issakidis-Bourguet E., Plant Physiol 136(4), 2004
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Molecular characterization of peroxiredoxin from Entamoeba moshkovskii and a comparison with Entamoeba histolytica.
Cheng XJ, Yoshihara E, Takeuchi T, Tachibana H., Mol Biochem Parasitol 138(2), 2004
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