Née G, Zaffagnini M, Trost P et al (2009) Redox regulation of chloroplastic glucose-6-phosphate
dehydrogenase: a new role for f-type thioredoxin. FEBS Lett 583:2827–2832
Nikkanen L, Toivola J, Rintamäki E (2016) Crosstalk between chloroplast thioredoxin systems in
regulation of photosynthesis. Plant Cell Environ 39:804–822
Ojeda V, Perez-Ruiz JM, Gonzalez MC et al (2017) NADPH thioredoxin reductase C and
thioredoxins act concertedly in seedling development. Plant Physiol 174:1436–1448
Okegawa Y, Motohashi K (2015) Chloroplastic thioredoxin m functions as a major regulator of
Calvin cycle enzymes during photosynthesis in vivo. Plant J 84:900–913
Park SK, Jung YJ, Lee JR et al (2009) Heat-shock and redox-dependent functional switching of an
h-type Arabidopsis thioredoxin from a disulfide reductase to a molecular chaperone. Plant
Physiol 150:552–561
Pascual MB, Mata-Cabana A, Florencio FJ et al (2010) Overoxidation of 2-Cys peroxiredoxin in
prokaryotes: cyanobacterial 2-Cys peroxiredoxins sensitive to oxidative stress. J Biol Chem
285:34485–34492
Pascual MB, Mata-Cabana A, Florencio FJ et al (2011) A comparative analysis of the NADPH
thioredoxin reductase C-2-Cys peroxiredoxin system from plants and cyanobacteria. Plant
Physiol 155:1806–1816
Perez-Ruiz JM, Cejudo FJ (2009) A proposed reaction mechanism for rice NADPH thioredoxin
reductase C, an enzyme with protein disulfide reductase activity. FEBS Lett 583:1399–1402
Perez-Ruiz JM, Spinola MC, Kirchsteiger K et al (2006) Rice NTRC is a high-efficiency redox
system for chloroplast protection against oxidative damage. Plant Cell 18:2356–2368
Perez-Ruiz JM, Guinea M, Puerto-Galan L et al (2014) NADPH thioredoxin reductase C is
involved in redox regulation of the Mg-chelatase I subunit in Arabidopsis thaliana chloroplasts.
Mol Plant 7:1252–1255
Perez-Ruiz JM, Naranjo B, Ojeda V et al (2017) NTRC-dependent redox balance of 2-Cys
peroxiredoxins is needed for optimal function of the photosynthetic apparatus. Proc Natl
Acad Sci U S A 114:12069–12074
Perkins A, Nelson KJ, Parsonage D et al (2015) Peroxiredoxins: guardians against oxidative stress
and modulators of peroxide signaling. Trends Biochem Sci 40:435–445
Puerto-Galan L, Perez-Ruiz JM, Ferrandez J et al (2013) Overoxidation of chloroplast 2-Cys
peroxiredoxins: balancing toxic and signaling activities of hydrogen peroxide. Front Plant Sci
4:310
Puerto-Galan L, Perez-Ruiz JM, Guinea M et al (2015) The contribution of NADPH thioredoxin
reductase C (NTRC) and sulfiredoxin to 2-Cys peroxiredoxin overoxidation in Arabidopsis
thaliana chloroplasts. J Exp Bot 66:2957–2966
Pulido P, Cazalis R, Cejudo FJ (2009) An antioxidant redox system in the nucleus of wheat seed
cells suffering oxidative stress. Plant J 57:132–145
Pulido P, Spinola MC, Kirchsteiger K et al (2010) Functional analysis of the pathways for 2-Cys
peroxiredoxin reduction in Arabidopsis thaliana chloroplasts. J Exp Bot 61:4043–4054
Qin Y, Leydon AR, Manziello A et al (2009) Penetration of the stigma and style elicits a novel
transcriptome in pollen tubes, pointing to genes critical for growth in a pistil. PLoS Genet 8:
e1000621
Reichheld J-P, Mestres-Ortega D, Laloi C et al (2002) The multigenic family of thioredoxin h
in Arabidopsis thaliana: specific expression and stress response. Plant Physiol Biochem
40:685–690
Reichheld J-P, Meyer E, Khafif M et al (2005) AtNTRB is the major mitochondrial thioredoxin
reductase in Arabidopsis thaliana. FEBS Lett 579:337–342
Reichheld J-P, Khafif M, Riondet C et al (2007) Inactivation of thioredoxin reductases reveals a
complex interplay between thioredoxin and glutathione pathways in Arabidopsis development.
Plant Cell 19:1851–1865
Rey P, Pruvot G, Becuwe N et al (1998) A novel thioredoxin-like protein located in the chloroplast
is induced by water deficit in Solanum tuberosum L. plants. Plant J 13:97–107
On the Elaborate Network of Thioredoxins in Higher Plants
249
Précédent

- 257/342

Suivant