Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o

Barranco-Medina S, Krell T, Bernier-Villamor L, Sevilla F, Lazaro J-J, Dietz K-J (2008)
JOURNAL OF EXPERIMENTAL BOTANY 59(12): 3259-3269.

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Autor*in
Barranco-Medina, Sergio; Krell, Tino; Bernier-Villamor, Laura; Sevilla, Francisca; Lazaro, Juan-Jose; Dietz, Karl-JosefUniBi
Abstract / Bemerkung
Mitochondria from plants, yeast, and animals each contain at least one peroxiredoxin (Prx) that is involved in peroxide detoxification and redox signalling. The supramolecular dynamics of atypical type II Prx targeted to the mitochondrion was addressed in pea. Microcalorimetric (ITC) titrations identified an extremely high-affinity binding between the mitochondrial PsPrxIIF and Trx-o with a K-D of 126 +/- 14 pM. Binding was driven by a favourable enthalpy change (Delta H= -60.6 kcal mol(-1)) which was counterbalanced by unfavourable entropy changes (T Delta S = -47.1 kcal mol(-1)). This is consistent with the occurrence of large conformational changes during binding which was abolished upon site-directed mutaganesis of the catalytic C59S and C84S. The redox-dependent interaction was confirmed by gel filtration of mitochondrial extracts and co-immunoprecipitation from extracts. The heterocomplex of PsPrxIIF and Trx-o reduced peroxide substrates more efficiently than free PsPrxIIF suggesting that Trx-o serves as an efficient and specific electron donor to PsPrxIIF in vivo. Other Trx-s tested by ITC analysis failed to interact with PsPrxIIF indicating a specific recognition of PsPrxIIF by Trx-o. PsPrxIIF exists primarily as a dimer or a hexamer depending on the redox state. In addition to the well-characterized oligomerization of classical 2-Cys Prx the results also show that atypical Prx undergo large structural reorganization with implications for protein-protein interaction and function.
Stichworte
redox; thioredoxin; plant; peroxiredoxin; mitochondria; binding
Erscheinungsjahr
2008
Zeitschriftentitel
JOURNAL OF EXPERIMENTAL BOTANY
Band
59
Ausgabe
12
Seite(n)
3259-3269
ISSN
0022-0957
eISSN
1460-2431
Page URI
https://pub.uni-bielefeld.de/record/1586248

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Barranco-Medina S, Krell T, Bernier-Villamor L, Sevilla F, Lazaro J-J, Dietz K-J. Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o. JOURNAL OF EXPERIMENTAL BOTANY. 2008;59(12):3259-3269.
Barranco-Medina, S., Krell, T., Bernier-Villamor, L., Sevilla, F., Lazaro, J. - J., & Dietz, K. - J. (2008). Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o. JOURNAL OF EXPERIMENTAL BOTANY, 59(12), 3259-3269. https://doi.org/10.1093/jxb/ern177
Barranco-Medina, Sergio, Krell, Tino, Bernier-Villamor, Laura, Sevilla, Francisca, Lazaro, Juan-Jose, and Dietz, Karl-Josef. 2008. “Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o”. JOURNAL OF EXPERIMENTAL BOTANY 59 (12): 3259-3269.
Barranco-Medina, S., Krell, T., Bernier-Villamor, L., Sevilla, F., Lazaro, J. - J., and Dietz, K. - J. (2008). Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o. JOURNAL OF EXPERIMENTAL BOTANY 59, 3259-3269.
Barranco-Medina, S., et al., 2008. Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o. JOURNAL OF EXPERIMENTAL BOTANY, 59(12), p 3259-3269.
S. Barranco-Medina, et al., “Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o”, JOURNAL OF EXPERIMENTAL BOTANY, vol. 59, 2008, pp. 3259-3269.
Barranco-Medina, S., Krell, T., Bernier-Villamor, L., Sevilla, F., Lazaro, J.-J., Dietz, K.-J.: Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o. JOURNAL OF EXPERIMENTAL BOTANY. 59, 3259-3269 (2008).
Barranco-Medina, Sergio, Krell, Tino, Bernier-Villamor, Laura, Sevilla, Francisca, Lazaro, Juan-Jose, and Dietz, Karl-Josef. “Hexameric oligomerization of mitochondrial peroxiredoxin PrxIIF and formation of an ultrahigh affinity complex with its electron donor thioredoxin Trx-o”. JOURNAL OF EXPERIMENTAL BOTANY 59.12 (2008): 3259-3269.

36 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Peroxiredoxins and Redox Signaling in Plants.
Liebthal M, Maynard D, Dietz KJ., Antioxid Redox Signal 28(7), 2018
PMID: 28594234
ROS-related redox regulation and signaling in plants.
Noctor G, Reichheld JP, Foyer CH., Semin Cell Dev Biol 80(), 2018
PMID: 28733165
Lack of mitochondrial thioredoxin o1 is compensated by antioxidant components under salinity in Arabidopsis thaliana plants.
Calderón A, Sánchez-Guerrero A, Ortiz-Espín A, Martínez-Alcalá I, Camejo D, Jiménez A, Sevilla F., Physiol Plant 164(3), 2018
PMID: 29446456
Crystal structure of Arabidopsis thaliana peroxiredoxin A C119S mutant.
Yang Y, Cai W, Wang J, Pan W, Liu L, Wang M, Zhang M., Acta Crystallogr F Struct Biol Commun 74(pt 10), 2018
PMID: 30279313
Mitochondrial Arabidopsis thaliana TRXo Isoforms Bind an Iron⁻Sulfur Cluster and Reduce NFU Proteins In Vitro.
Zannini F, Roret T, Przybyla-Toscano J, Dhalleine T, Rouhier N, Couturier J., Antioxidants (Basel) 7(10), 2018
PMID: 30322144
The Unprecedented Versatility of the Plant‎ Thioredoxin System.
Geigenberger P, Thormählen I, Daloso DM, Fernie AR., Trends Plant Sci 22(3), 2017
PMID: 28139457
Glutathionylation of Pea Chloroplast 2-Cys Prx and Mitochondrial Prx IIF Affects Their Structure and Peroxidase Activity and Sulfiredoxin Deglutathionylates Only the 2-Cys Prx.
Calderón A, Lázaro-Payo A, Iglesias-Baena I, Camejo D, Lázaro JJ, Sevilla F, Jiménez A., Front Plant Sci 8(), 2017
PMID: 28197170
Mitochondrial AtTrxo1 is transcriptionally regulated by AtbZIP9 and AtAZF2 and affects seed germination under saline conditions.
Ortiz-Espín A, Iglesias-Fernández R, Calderón A, Carbonero P, Sevilla F, Jiménez A., J Exp Bot 68(5), 2017
PMID: 28184497
Structural changes upon peroxynitrite-mediated nitration of peroxiredoxin 2; nitrated Prx2 resembles its disulfide-oxidized form.
Randall L, Manta B, Nelson KJ, Santos J, Poole LB, Denicola A., Arch Biochem Biophys 590(), 2016
PMID: 26612102
Plant protein 2-Cys peroxiredoxin TaBAS1 alleviates oxidative and nitrosative stresses incurred during cryopreservation of mammalian cells.
Chow-Shi-Yée M, Grondin M, Averill-Bates DA, Ouellet F., Biotechnol Bioeng 113(7), 2016
PMID: 26724792
Functional and structural changes in plant mitochondrial PrxII F caused by NO.
Camejo D, Ortiz-Espín A, Lázaro JJ, Romero-Puertas MC, Lázaro-Payo A, Sevilla F, Jiménez A., J Proteomics 119(), 2015
PMID: 25682994
Over-expression of Trxo1 increases the viability of tobacco BY-2 cells under H2O2 treatment.
Ortiz-Espín A, Locato V, Camejo D, Schiermeyer A, De Gara L, Sevilla F, Jiménez A., Ann Bot 116(4), 2015
PMID: 26041732
A universal entropy-driven mechanism for thioredoxin-target recognition.
Palde PB, Carroll KS., Proc Natl Acad Sci U S A 112(26), 2015
PMID: 26080424
Redox regulation of Arabidopsis mitochondrial citrate synthase.
Schmidtmann E, König AC, Orwat A, Leister D, Hartl M, Finkemeier I., Mol Plant 7(1), 2014
PMID: 24198232
Redox regulation of chloroplastic G6PDH activity by thioredoxin occurs through structural changes modifying substrate accessibility and cofactor binding.
Née G, Aumont-Nicaise M, Zaffagnini M, Nessler S, Valerio-Lepiniec M, Issakidis-Bourguet E., Biochem J 457(1), 2014
PMID: 24079807
The interplay of light and oxygen in the reactive oxygen stress response of Chlamydomonas reinhardtii dissected by quantitative mass spectrometry.
Barth J, Bergner SV, Jaeger D, Niehues A, Schulze S, Scholz M, Fufezan C., Mol Cell Proteomics 13(4), 2014
PMID: 24482124
Molecular recognition in the interaction of chloroplast 2-Cys peroxiredoxin with NADPH-thioredoxin reductase C (NTRC) and thioredoxin x.
Bernal-Bayard P, Ojeda V, Hervás M, Cejudo FJ, Navarro JA, Velázquez-Campoy A, Pérez-Ruiz JM., FEBS Lett 588(23), 2014
PMID: 25448674
Mitochondrial energy and redox signaling in plants.
Schwarzländer M, Finkemeier I., Antioxid Redox Signal 18(16), 2013
PMID: 23234467
Systematic exploration of thioredoxin target proteins in plant mitochondria.
Yoshida K, Noguchi K, Motohashi K, Hisabori T., Plant Cell Physiol 54(6), 2013
PMID: 23444301
Chaperone-like properties of tobacco plastid thioredoxins f and m.
Sanz-Barrio R, Fernández-San Millán A, Carballeda J, Corral-Martínez P, Seguí-Simarro JM, Farran I., J Exp Bot 63(1), 2012
PMID: 21948853
Helicobacter pylori defense against oxidative attack.
Stent A, Every AL, Sutton P., Am J Physiol Gastrointest Liver Physiol 302(6), 2012
PMID: 22194421
Thioredoxin and glutaredoxin systems in plants: molecular mechanisms, crosstalks, and functional significance.
Meyer Y, Belin C, Delorme-Hinoux V, Reichheld JP, Riondet C., Antioxid Redox Signal 17(8), 2012
PMID: 22531002
Analysis of the antioxidant response of Nicotiana benthamiana to infection with two strains of Pepper mild mottle virus.
Hakmaoui A, Pérez-Bueno ML, García-Fontana B, Camejo D, Jiménez A, Sevilla F, Barón M., J Exp Bot 63(15), 2012
PMID: 22915745
The dual-targeted plant sulfiredoxin retroreduces the sulfinic form of atypical mitochondrial peroxiredoxin.
Iglesias-Baena I, Barranco-Medina S, Sevilla F, Lázaro JJ., Plant Physiol 155(2), 2011
PMID: 21139087
Response of mitochondrial thioredoxin PsTrxo1, antioxidant enzymes, and respiration to salinity in pea (Pisum sativum L.) leaves.
Martí MC, Florez-Sarasa I, Camejo D, Ribas-Carbó M, Lázaro JJ, Sevilla F, Jiménez A., J Exp Bot 62(11), 2011
PMID: 21460385
Peroxiredoxins in plants and cyanobacteria.
Dietz KJ., Antioxid Redox Signal 15(4), 2011
PMID: 21194355
Peroxiredoxins and NADPH-dependent thioredoxin systems in the model legume Lotus japonicus.
Tovar-Méndez A, Matamoros MA, Bustos-Sanmamed P, Dietz KJ, Cejudo FJ, Rouhier N, Sato S, Tabata S, Becana M., Plant Physiol 156(3), 2011
PMID: 21562331
Evidence of non-functional redundancy between two pea h-type thioredoxins by specificity and stability studies.
Traverso JA, López-Jaramillo FJ, Serrato AJ, Ortega-Muñoz M, Aguado-Llera D, Sahrawy M, Santoyo-Gonzalez F, Neira JL, Chueca A., J Plant Physiol 167(6), 2010
PMID: 20005595
An extracellular disulfide bond forming protein (DsbF) from Mycobacterium tuberculosis: structural, biochemical, and gene expression analysis.
Chim N, Riley R, The J, Im S, Segelke B, Lekin T, Yu M, Hung LW, Terwilliger T, Whitelegge JP, Goulding CW., J Mol Biol 396(5), 2010
PMID: 20060836
Thioredoxins and glutaredoxins: unifying elements in redox biology.
Meyer Y, Buchanan BB, Vignols F, Reichheld JP., Annu Rev Genet 43(), 2009
PMID: 19691428
Mitochondrial and nuclear localization of a novel pea thioredoxin: identification of its mitochondrial target proteins.
Martí MC, Olmos E, Calvete JJ, Díaz I, Barranco-Medina S, Whelan J, Lázaro JJ, Sevilla F, Jiménez A., Plant Physiol 150(2), 2009
PMID: 19363090
The oligomeric conformation of peroxiredoxins links redox state to function.
Barranco-Medina S, Lázaro JJ, Dietz KJ., FEBS Lett 583(12), 2009
PMID: 19464293
Multiple redox and non-redox interactions define 2-Cys peroxiredoxin as a regulatory hub in the chloroplast.
Muthuramalingam M, Seidel T, Laxa M, Nunes de Miranda SM, Gärtner F, Ströher E, Kandlbinder A, Dietz KJ., Mol Plant 2(6), 2009
PMID: 19995730

38 References

Daten bereitgestellt von Europe PubMed Central.

Thioredoxin links redox to the regulation of fundamental processes of plant mitochondria
Balmer Y, Vensel WH, Tanaka CK., 2004
Human mitochondrial peroxiredoxin 5 protects from mitochondrial DNA damages induced by hydrogen peroxide.
Banmeyer I, Marchand C, Clippe A, Knoops B., FEBS Lett. 579(11), 2005
PMID: 15848167
Thermodynamics of the dimer-decamer transition of reduced human and plant 2-cys peroxiredoxin.
Barranco-Medina S, Kakorin S, Lazaro JJ, Dietz KJ., Biochemistry 47(27), 2008
PMID: 18553980
Biochemical and molecular characterization of the mitochondrial peroxiredoxin PsPrxIIF from
Barranco-Medina S, Krell T, Finkemeier I, Sevilla F, Lázaro JJ, Dietz KJ., 2007
Cloning, overexpression, purification, and preliminary crystallographic studies of a mitochondrial type II peroxiredoxin from
Barranco-Medina S, López-Jaramillo FJ, Bernier-Villamor L, Sevilla F, Lázaro JJ., 2006
Cloning and characterization of a 2-Cys peroxiredoxin from Pisum sativum.
Bernier-Villamor L, Navarro E, Sevilla F, Lazaro JJ., J. Exp. Bot. 55(406), 2004
PMID: 15333640
Dimerization of thiol-specific antioxidant and the essential role of cysteine 47
Chae HZ, Uhm TB, Rhee SG., 1994
Geno3D: automatic comparative molecular modelling of protein.
Combet C, Jambon M, Deleage G, Geourjon C., Bioinformatics 18(1), 2002
PMID: 11836238
Crystal structure and solution NMR dynamics of a D (type II) peroxiredoxin glutaredoxin and thioredoxin dependent: a new insight into the peroxiredoxin oligomerism.
Echalier A, Trivelli X, Corbier C, Rouhier N, Walker O, Tsan P, Jacquot JP, Aubry A, Krimm I, Lancelin JM., Biochemistry 44(6), 2005
PMID: 15697201
The mitochondrial type II peroxiredoxin F is essential for redox homeostasis and root growth of Arabidopsis thaliana under stress.
Finkemeier I, Goodman M, Lamkemeyer P, Kandlbinder A, Sweetlove LJ, Dietz KJ., J. Biol. Chem. 280(13), 2005
PMID: 15632145
The mitochondrial type II peroxiredoxin from poplar
Gama F, Keech O, Eymery F, Finkemeier I, Gelhaye E, Gardeström P, Dietz KJ, Rey P, Jacquot JP, Rouhier N., 2007
Structure and mechanism of the alkyl hydroperoxidase AhpC, a key element of the Mycobacterium tuberculosis defense system against oxidative stress.
Guimaraes BG, Souchon H, Honore N, Saint-Joanis B, Brosch R, Shepard W, Cole ST, Alzari PM., J. Biol. Chem. 280(27), 2005
PMID: 15886207
Oxidation-reduction properties of chloroplast thioredoxins, ferredoxin:thioredoxin reductase, and thioredoxin f-regulated enzymes.
Hirasawa M, Schurmann P, Jacquot JP, Manieri W, Jacquot P, Keryer E, Hartman FC, Knaff DB., Biochemistry 38(16), 1999
PMID: 10213627
Divergent light-, ascorbate-, and oxidative stress-dependent regulation of expression of the peroxiredoxin gene family in Arabidopsis.
Horling F, Lamkemeyer P, Konig J, Finkemeier I, Kandlbinder A, Baier M, Dietz KJ., Plant Physiol. 131(1), 2003
PMID: 12529539
The plant-specific function of 2-Cys peroxiredoxin-mediated detoxification of peroxides in the redox-hierarchy of photosynthetic electron flux
König J, Baier M, Horling F, Kahmann U, Harris G, Schürman P, Dietz K-J., 2002
HIV-1 evades antibody-mediated neutralization through conformational masking of receptor-binding sites.
Kwong PD, Doyle ML, Casper DJ, Cicala C, Leavitt SA, Majeed S, Steenbeke TD, Venturi M, Chaiken I, Fung M, Katinger H, Parren PW, Robinson J, Van Ryk D, Wang L, Burton DR, Freire E, Wyatt R, Sodroski J, Hendrickson WA, Arthos J., Nature 420(6916), 2002
PMID: 12478295
Identification and characterization of a mitochondrial thioredoxin system in plants
Laloi C, Rayapuram N, Chartier Y, Grienenberger JM, Bonnard G, Meyer Y., 2001
Peroxiredoxin Q of Arabidopsis thaliana is attached to the thylakoids and functions in context of photosynthesis.
Lamkemeyer P, Laxa M, Collin V, Li W, Finkemeier I, Schottler MA, Holtkamp V, Tognetti VB, Issakidis-Bourguet E, Kandlbinder A, Weis E, Miginiac-Maslow M, Dietz KJ., Plant J. 45(6), 2006
PMID: 16507087
Oxidative stress-dependent structural and functional switching of a human 2-Cys peroxiredoxin isotype II that enhances HeLa cell resistance to H2O2-induced cell death.
Moon JC, Hah YS, Kim WY, Jung BG, Jang HH, Lee JR, Kim SY, Lee YM, Jeon MG, Kim CW, Cho MJ, Lee SY., J. Biol. Chem. 280(31), 2005
PMID: 15941719
Comprehensive survey of proteins targeted by chloroplast thioredoxin
Motohasi K, Kondoh A, Stumpp MT, Hisabori T., 2001
Energetics of the HIV gp120-CD4 binding reaction
Myszka DG, Sweet RW, Hensley P, Brigham-Burke M, Kwong PD, Hendrickson WA, Wyatt R, Sodroski J, Doyle ML., 2000
Early events in erythroid differentiation: accumulation of the acidic peroxidoxin (PRP/TSA/NKEF-B).
Rabilloud T, Berthier R, Vincon M, Ferbus D, Goubin G, Lawrence JJ., Biochem. J. 312 ( Pt 3)(), 1995
PMID: 8554508
Proteomics analysis of cellular response to oxidative stress. Evidence for in vivo overoxidation of peroxiredoxins at their active site.
Rabilloud T, Heller M, Gasnier F, Luche S, Rey C, Aebersold R, Benahmed M, Louisot P, Lunardi J., J. Biol. Chem. 277(22), 2002
PMID: 11904290
Disulfide bridges in the mesophilic triosephosphate isomerase from Giardia lamblia are related to oligomerization and activity.
Reyes-Vivas H, Diaz A, Peon J, Mendoza-Hernandez G, Hernandez-Alcantara G, De la Mora-De la Mora I, Enriquez-Flores S, Dominguez-Ramirez L, Lopez-Velazquez G., J. Mol. Biol. 365(3), 2006
PMID: 17095008
Identification of plant glutaredoxin targets
Rouhier N, Villarejo A, Srivastava M., 2005
Protein–protein interactions: interface structure, binding thermodynamics, and mutational analysis
Stites WE., 1997
Concepts and approaches towards understanding the cellular redox proteome.
Stroher E, Dietz KJ., Plant Biol (Stuttg) 8(4), 2006
PMID: 16906481
Hepatic microsomal ethanol oxidation. Hydrogen peroxide formation and the role of catalase
Thurman RG, Ley HG, Scholz R., 1972
Rapid measurement of binding constants and heats of binding using a new titration calorimeter
Wiseman T, Williston S, Brandts JF, Lin LN., 1989
Structure, mechanism and regulation of peroxiredoxins
Wood ZA, Schröder E, Harris JL, Poole LB., 2003
Mouse peroxiredoxin V is a thioredoxin peroxidase that inhibits p53-induced apoptosis.
Zhou Y, Kok KH, Chun AC, Wong CM, Wu HW, Lin MC, Fung PC, Kung H, Jin DY., Biochem. Biophys. Res. Commun. 268(3), 2000
PMID: 10679306
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