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Results of search for 'su:"FMN Reductase"', page 12 of 37
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Authors
Abadía, Anunciación
Abadía, J
Abadía, Javier
Anderson, G J
Connolly, Erin L
Dancis, A
Ellis, Holly R
Esimbekova, E N
Fontecave, M
Klausner, R D
Kratasyuk, V A
Lei, B
Lesuisse, E
Li, Mingchun
Macheroux, Peter
Nivière, V
Saigo, K
Tu, S C
Tu, Shiao-Chun
Xun, Luying
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Topics
Amino Acid Sequence
Animals
Bacterial Proteins
Escherichia coli
FMN Reductase
Humans
Iron
Kinetics
Molecular Sequence Data
NAD
NADH, NADPH Oxidoreductases
Oxidation-Reduction
Plant Roots
analysis
chemistry
drug effects
enzymology
genetics
metabolism
pharmacology
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221.
Reduction of 2,3-bis(2-methoxy-4-nitro-5-sulfophenyl)-2H-tetrazolium-5-carboxanilide inner salt (XTT) is dependent on CaFRE10 ferric reductase for Candida albicans grown in unbuffered media.
[electronic resource]
by
Knight, Simon A B
Dancis, Andrew
Producer:
20060914
In:
Microbiology (Reading, England)
vol. 152
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222.
Identification of JadG as the B ring opening oxygenase catalyzing the oxidative C-C bond cleavage reaction in jadomycin biosynthesis.
[electronic resource]
by
Fan, Keqiang
Pan, Guohui
Peng, Xiaojing
Zheng, Jianting
Gao, Wubin
Wang, Juan
Wang, Weishan
Li, Yue
Yang, Keqian
Producer:
20130507
In:
Chemistry & biology
vol. 19
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223.
Antioxidant activity of humic substances via bioluminescent monitoring in vitro.
[electronic resource]
by
Tarasova, A S
Stom, D I
Kudryasheva, N S
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20150709
In:
Environmental monitoring and assessment
vol. 187
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224.
Reduction of methemoglobin through flavin at the physiological concentration by NADPH-flavin reductase of human erythrocytes.
[electronic resource]
by
Yubisui, T
Takeshita, M
Yoneyama, Y
Producer:
19801024
In:
Journal of biochemistry
vol. 87
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225.
Iron deficiency enhances the levels of ascorbate, glutathione, and related enzymes in sugar beet roots.
[electronic resource]
by
Zaharieva, Tatiana B
Abadía, Javier
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20040317
In:
Protoplasma
vol. 221
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226.
Direct electrochemical regeneration of monooxygenase subunits for biocatalytic asymmetric epoxidation.
[electronic resource]
by
Hollmann, Frank
Hofstetter, Karin
Habicher, Tilo
Hauer, Bernhard
Schmid, Andreas
Producer:
20050628
In:
Journal of the American Chemical Society
vol. 127
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227.
ArsH from Synechocystis sp. PCC 6803 reduces chromate and ferric iron.
[electronic resource]
by
Xue, Xi-Mei
Yan, Yu
Xu, Hui-Juan
Wang, Ning
Zhang, Xiao
Ye, Jun
Producer:
20150330
In:
FEMS microbiology letters
vol. 356
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228.
Medicago truncatula ecotypes A17 and R108 differed in their response to iron deficiency.
[electronic resource]
by
Li, Gen
Wang, Baolan
Tian, Qiuying
Wang, Tianzuo
Zhang, Wen-Hao
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20141222
In:
Journal of plant physiology
vol. 171
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229.
A Minimized Chemoenzymatic Cascade for Bacterial Luciferase in Bioreporter Applications.
[electronic resource]
by
Phonbuppha, Jittima
Tinikul, Ruchanok
Wongnate, Thanyaporn
Intasian, Pattarawan
Hollmann, Frank
Paul, Caroline E
Chaiyen, Pimchai
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20210622
In:
Chembiochem : a European journal of chemical biology
vol. 21
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230.
Regulation of iron uptake in Saccharomyces cerevisiae. The ferrireductase and Fe(II) transporter are regulated independently.
[electronic resource]
by
Eide, D
Davis-Kaplan, S
Jordan, I
Sipe, D
Kaplan, J
Producer:
19921118
In:
The Journal of biological chemistry
vol. 267
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231.
NAD(P)H:ferric iron reductase in endosomal membranes from rat liver.
[electronic resource]
by
Scheiber, B
Goldenberg, H
Producer:
19931012
In:
Archives of biochemistry and biophysics
vol. 305
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232.
Altered mechanism of the alkanesulfonate FMN reductase with the monooxygenase enzyme.
[electronic resource]
by
Gao, Benlian
Ellis, Holly R
Producer:
20050719
In:
Biochemical and biophysical research communications
vol. 331
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233.
Dynamic control of electron transfers in diflavin reductases.
[electronic resource]
by
Aigrain, Louise
Fatemi, Fataneh
Frances, Oriane
Lescop, Ewen
Truan, Gilles
Producer:
20150423
In:
International journal of molecular sciences
vol. 13
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234.
Physiological and transcriptomic data highlight common features between iron and phosphorus acquisition mechanisms in white lupin roots.
[electronic resource]
by
Venuti, Silvia
Zanin, Laura
Marroni, Fabio
Franco, Alessandro
Morgante, Michele
Pinton, Roberto
Tomasi, Nicola
Producer:
20190813
In:
Plant science : an international journal of experimental plant biology
vol. 285
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235.
Bioluminescent microassay of various metabolites using bacterial luciferase co-immobilized with multienzyme systems.
[electronic resource]
by
Ugarova, N N
Lebedeva, O V
Frumkina, I G
Producer:
19881214
In:
Analytical biochemistry
vol. 173
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236.
A bacterial flavin reductase system reduces chromate to a soluble chromium(III)-NAD(+) complex.
[electronic resource]
by
Puzon, Geoffrey J
Petersen, James N
Roberts, Arthur G
Kramer, David M
Xun, Luying
Producer:
20020722
In:
Biochemical and biophysical research communications
vol. 294
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237.
Determination of the redox potentials and electron transfer properties of the FAD- and FMN-binding domains of the human oxidoreductase NR1.
[electronic resource]
by
Finn, Robert D
Basran, Jaswir
Roitel, Olivier
Wolf, C Roland
Munro, Andrew W
Paine, Mark J I
Scrutton, Nigel S
Producer:
20030509
In:
European journal of biochemistry
vol. 270
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238.
Iodotyrosine deiodinase is the first mammalian member of the NADH oxidase/flavin reductase superfamily.
[electronic resource]
by
Friedman, Jessica E
Watson, James A
Lam, David W-H
Rokita, Steven E
Producer:
20060510
In:
The Journal of biological chemistry
vol. 281
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239.
NADH: flavin oxidoreductase/NADH oxidase and ROS regulate microsclerotium development in Nomuraea rileyi.
[electronic resource]
by
Liu, Juanjuan
Yin, Youping
Song, Zhangyong
Li, Yan
Jiang, Shasha
Shao, Changwen
Wang, Zhongkang
Producer:
20150202
In:
World journal of microbiology & biotechnology
vol. 30
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240.
Evidence for the generation of myristylated FMN by bacterial luciferase.
[electronic resource]
by
Tabib, Chaitanya R
Brodl, Eveline
Macheroux, Peter
Producer:
20170921
In:
Molecular microbiology
vol. 104
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