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Cloning and characterization of a maize cytochrome-b5 reductase with Fe3+-chelate reduction capability
1999
Bagnaresi, P.; Thoiron, S.; Mansion, M.; Rossignol, M.; Pupillo, P.; Briat, J.F.
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Tonoplast subcellular localization of maize cytochrome b5 reductases
2000
Bagnaresi, P.; Mazars-Marty, D.; Pupilld, P.; Marty, F.; Briat, J.F.
Plant J.
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FAD semiquinone stability regulates single- and two-electron reduction of quinones by Anabaena PCC7119 ferredoxin:NADP+ reductase and its Glu301Ala mutant
2005
Anusevicius, Z.; Miseviciene, L.; Medina, M.; Martinez-Julvez, M.; Gomez-Moreno, C.; Cenas, N.
Arch. Biochem. Biophys.
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Three mammalian cytochromes b561 are ascorbate-dependent ferrireductases
2006
Su, D.; Asard, H.
FEBS J.
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Ferredoxin-NADP+ reductase from Pseudomonas putida functions as a ferric reductase
2009
Yeom, J.; Jeon, C.O.; Madsen, E.L.; Park, W.
J. Bacteriol.
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An Arabidopsis cytochrome b561 with trans-membrane ferrireductase capability
2007
Berczi, A.; Su, D.; Asard, H.
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A cytochrome b561 with ferric reductase activity from the parasitic blood fluke, Schistosoma japonicum
2010
Glanfield, A.; McManus, D.P.; Smyth, D.J.; Lovas, E.M.; Loukas, A.; Gobert, G.N.; Jones, M.K.
PLoS Negl. Trop. Dis.
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Escherichia coli ferredoxin-NADP+ reductase and oxygen-insensitive nitroreductase are capable of functioning as ferric reductase and of driving the Fenton reaction
2010
Takeda, K.; Sato, J.; Goto, K.; Fujita, T.; Watanabe, T.; Abo, M.; Yoshimura, E.; Nakagawa, J.; Abe, A.; Kawasaki, S.; Niimura, Y.
Biometals
23
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Synechocystis ferredoxin-NADP+ oxidoreductase is capable of functioning as ferric reductase and of driving the Fenton reaction in the absence or presence of free flavin
2011
Sato, J.; Takeda, K.; Nishiyama, R.; Watanabe, T.; Abo, M.; Yoshimura, E.; Nakagawa, J.; Abe, A.; Kawasaki, S.; Niimura, Y.
Biometals
24
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Fur and the novel regulator Yqji control transcription of the ferric reductase gene yqjh in Escherichia coli
2011
Wang, S.; Wu, Y.; Outten, F.
J. Bacteriol.
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Identification and characterization of a novel ferric reductase from the hyperthermophilic archaeon Archaeoglobus fulgidus
1999
Vadas, A.; Monbouquette, H.G.; Johnson, E.; Schroeder, I.
J. Biol. Chem.
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Characterization of FRO1, a pea ferric-chelate reductase involved in root iron acquisition
2002
Waters, B.; Blevins, D.; Eide, D.
Plant Physiol.
129
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Thioredoxin reductase-type ferredoxin NADP+ oxidoreductase of Rhodopseudomonas palustris potentiometric characteristics and reactions with nonphysiological oxidants
2022
Lesanavicius, M.; Seo, D.; Cenas, N.
Antioxidants (Basel)
11
0000
Development of a synthesis method for odor sesquiterpenoid, (-)-rotundone, using non-heme Fe2+-chelate catalyst and ferric-chelate reductase
2019
Umezawa, S.; Konishi, S.; Kino, K.
Biosci. Biotechnol. Biochem.
83
1875-1883
Chemoenzymatic oxygenation method for sesquiterpenoid synthesis based on Fe-chelate and ferric-chelate reductase
2020
Umezawa, S.; Akao, H.; Kubota, M.; Kino, K.
Biosci. Biotechnol. Biochem.
84
780-788
Supraoptimal iron nutrition of Brassica napus plants suppresses the iron uptake of chloroplasts by down-regulating chloroplast ferric chelate reductase
2021
Sagi-Kazar, M.; Zelenyanszki, H.; Mueller, B.; Cseh, B.; Gyuris, B.; Farkas, S.Z.; Fodor, F.; Toth, B.; Kovacs, B.; Koncz, A.; Visnovitz, T.; Buzas, E.I.; Bankuti, B.; Banati, F.; Szenthe, K.; Solti, A.
Front. Plant Sci.
12
658987
Reactions of Plasmodium falciparum ferredoxin NADP+ oxidoreductase with redox cycling xenobiotics a mechanistic study
2020
Lesanavicius, M.; Aliverti, A.; sarlauskas, J.; Cenas, N.
Int. J. Mol. Sci.
21
3234