Cabrillac D, Cock JM, Dumas C et al (2001) The S-locus receptor kinase is inhibited by
thioredoxins and activated by pollen coat proteins. Nature 410:220–223
Calderón A, Ortiz-Espín A, Iglesias-Fernández R et al (2017) Thioredoxin (Trxo1) interacts with
proliferating cell nuclear antigen (PCNA) and its overexpression affects the growth of tobacco
cell culture. Redox Biol 11:688–700
Carrillo LR, Froehlich JE, Cruz JA et al (2016) Multi-level regulation of the chloroplast ATP
synthase: the chloroplast NADPH thioredoxin reductase C (NTRC) is required for redox
modulation specifically under low irradiance. Plant J 87:654–663
Cejudo FJ, Ferrandez J, Cano B et al (2012) The function of the NADPH thioredoxin reductase C-2Cys peroxiredoxin system in plastid redox regulation and signalling. FEBS Lett 586:2974–2980
Chae HB, Moon JC, Shin MR et al (2013) Thioredoxin reductase type C (NTRC) orchestrates
enhanced thermotolerance to Arabidopsis by its redox-dependent holdase chaperone function.
Mol Plant 6:323–336
Chibani K, Tarrago L, Schürmann P et al (2011) Biochemical properties of poplar thioredoxin
z. FEBS Lett 585:1077–1081
Collin V, Issakidis-Bourguet E, Marchand C et al (2003) The Arabidopsis plastidial thioredoxins:
new functions and new insights into specificity. J Biol Chem 278:23747–23752
Collin V, Lamkemeyer P, Miginiac-Maslow M et al (2004) Characterization of plastidial
thioredoxins from Arabidopsis belonging to the new y-type. Plant Physiol 136:4088–4095
Courteille A, Vesa S, Sanz-Barrio R et al (2013) Thioredoxin m4 controls photosynthetic alternative electron pathways in Arabidopsis. Plant Physiol 161:508–520
Da Q, Wang P, Wang M et al (2017) Thioredoxin and NADPH-dependent thioredoxin reductase C
regulation of tetrapyrrole biosynthesis. Plant Physiol 175:652–666
Daloso DM, Müller K, Obata T et al (2015) Thioredoxin, a master regulator of the tricarboxylic acid
cycle in plant mitochondria. Proc Natl Acad Sci U S A 112:E1392–E1400
Dangoor I, Peled-Zehavi H, Levitan A et al (2009) A small family of chloroplast atypical
thioredoxins. Plant Physiol 149:1240–1250
Eliyahu E, Rog I, Inbal D et al (2015) ACHT4-driven oxidation of APS1 attenuates starch synthesis
under low light intensity in Arabidopsis plants. Proc Natl Acad Sci U S A 112:12876–12881
Entus R, Poling M, Herrmann KM (2002) Redox regulation of Arabidopsis 3-deoxy-D-arabinoheptulosonate 7-phosphate synthase. Plant Physiol 129:1866–1871
Geigenberger P, Fernie A (2014) Metabolic control of redox and redox control of metabolism in
plants. Antioxid Redox Signal 21:1389–1421
Geigenberger P, Kolbe A, Tiessen A (2005) Redox regulation of carbon storage and partitioning in
response to light and sugars. J Exp Bot 56:1469–1479
Geigenberger P, Thormählen I, Daloso DM et al (2017) The unprecedented versatility of the plant
thioredoxin system. Trends Plant Sci 22:249–262
Gelhaye E, Rouhier N, Jacquot JP (2003) Evidence for a subgroup of thioredoxin h that requires
GSH/Grx for its reduction. FEBS Lett 555:443–448
Gelhaye E, Rouhier N, Gérard J et al (2004) A specific form of thioredoxin h occurs in plant
mitochondria and regulates the alternative oxidase. Proc Natl Acad Sci U S A 101:14545–14550
Gould SB, Waller RF, McFadden GI (2008) Plastid evolution. Annu Rev Plant Biol 59:491–517
Hertle AP, Blunder T, Wunder T et al (2013) PGRL1 is the elusive ferredoxin-plastoquinone
reductase in photosynthetic cyclic electron flow. Mol Cell 49:511–523
Huang J, Niazi AK, Young D et al (2017) Self-protection of Arabidopsis cytosolic malate
dehydrogenase against oxidative stress. J Exp Bot. https://doi.org/10.1093/jxb/erx396
Ikegami A, Yoshimura N, Motohashi K et al (2007) The CHLI1 subunit of Arabidopsis thaliana
magnesium chelatase is a target protein of the chloroplast thioredoxin. J Biol Chem
282:19282–19291
Ishiga Y, Ishiga T, Wangdi T et al (2012) NTRC and chloroplast-generated reactive oxygen species
regulate Pseudomonas syringae pv. tomato disease development in tomato and Arabidopsis.
Mol Plant-Microbe Interact 25:294–306
246
I. Thormählen et al.
thioredoxins and activated by pollen coat proteins. Nature 410:220–223
Calderón A, Ortiz-Espín A, Iglesias-Fernández R et al (2017) Thioredoxin (Trxo1) interacts with
proliferating cell nuclear antigen (PCNA) and its overexpression affects the growth of tobacco
cell culture. Redox Biol 11:688–700
Carrillo LR, Froehlich JE, Cruz JA et al (2016) Multi-level regulation of the chloroplast ATP
synthase: the chloroplast NADPH thioredoxin reductase C (NTRC) is required for redox
modulation specifically under low irradiance. Plant J 87:654–663
Cejudo FJ, Ferrandez J, Cano B et al (2012) The function of the NADPH thioredoxin reductase C-2Cys peroxiredoxin system in plastid redox regulation and signalling. FEBS Lett 586:2974–2980
Chae HB, Moon JC, Shin MR et al (2013) Thioredoxin reductase type C (NTRC) orchestrates
enhanced thermotolerance to Arabidopsis by its redox-dependent holdase chaperone function.
Mol Plant 6:323–336
Chibani K, Tarrago L, Schürmann P et al (2011) Biochemical properties of poplar thioredoxin
z. FEBS Lett 585:1077–1081
Collin V, Issakidis-Bourguet E, Marchand C et al (2003) The Arabidopsis plastidial thioredoxins:
new functions and new insights into specificity. J Biol Chem 278:23747–23752
Collin V, Lamkemeyer P, Miginiac-Maslow M et al (2004) Characterization of plastidial
thioredoxins from Arabidopsis belonging to the new y-type. Plant Physiol 136:4088–4095
Courteille A, Vesa S, Sanz-Barrio R et al (2013) Thioredoxin m4 controls photosynthetic alternative electron pathways in Arabidopsis. Plant Physiol 161:508–520
Da Q, Wang P, Wang M et al (2017) Thioredoxin and NADPH-dependent thioredoxin reductase C
regulation of tetrapyrrole biosynthesis. Plant Physiol 175:652–666
Daloso DM, Müller K, Obata T et al (2015) Thioredoxin, a master regulator of the tricarboxylic acid
cycle in plant mitochondria. Proc Natl Acad Sci U S A 112:E1392–E1400
Dangoor I, Peled-Zehavi H, Levitan A et al (2009) A small family of chloroplast atypical
thioredoxins. Plant Physiol 149:1240–1250
Eliyahu E, Rog I, Inbal D et al (2015) ACHT4-driven oxidation of APS1 attenuates starch synthesis
under low light intensity in Arabidopsis plants. Proc Natl Acad Sci U S A 112:12876–12881
Entus R, Poling M, Herrmann KM (2002) Redox regulation of Arabidopsis 3-deoxy-D-arabinoheptulosonate 7-phosphate synthase. Plant Physiol 129:1866–1871
Geigenberger P, Fernie A (2014) Metabolic control of redox and redox control of metabolism in
plants. Antioxid Redox Signal 21:1389–1421
Geigenberger P, Kolbe A, Tiessen A (2005) Redox regulation of carbon storage and partitioning in
response to light and sugars. J Exp Bot 56:1469–1479
Geigenberger P, Thormählen I, Daloso DM et al (2017) The unprecedented versatility of the plant
thioredoxin system. Trends Plant Sci 22:249–262
Gelhaye E, Rouhier N, Jacquot JP (2003) Evidence for a subgroup of thioredoxin h that requires
GSH/Grx for its reduction. FEBS Lett 555:443–448
Gelhaye E, Rouhier N, Gérard J et al (2004) A specific form of thioredoxin h occurs in plant
mitochondria and regulates the alternative oxidase. Proc Natl Acad Sci U S A 101:14545–14550
Gould SB, Waller RF, McFadden GI (2008) Plastid evolution. Annu Rev Plant Biol 59:491–517
Hertle AP, Blunder T, Wunder T et al (2013) PGRL1 is the elusive ferredoxin-plastoquinone
reductase in photosynthetic cyclic electron flow. Mol Cell 49:511–523
Huang J, Niazi AK, Young D et al (2017) Self-protection of Arabidopsis cytosolic malate
dehydrogenase against oxidative stress. J Exp Bot. https://doi.org/10.1093/jxb/erx396
Ikegami A, Yoshimura N, Motohashi K et al (2007) The CHLI1 subunit of Arabidopsis thaliana
magnesium chelatase is a target protein of the chloroplast thioredoxin. J Biol Chem
282:19282–19291
Ishiga Y, Ishiga T, Wangdi T et al (2012) NTRC and chloroplast-generated reactive oxygen species
regulate Pseudomonas syringae pv. tomato disease development in tomato and Arabidopsis.
Mol Plant-Microbe Interact 25:294–306
246
I. Thormählen et al.
