Page last updated: 2024-08-17

9,10-phenanthrenequinone and nadp

9,10-phenanthrenequinone has been researched along with nadp in 14 studies

Research

Studies (14)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's9 (64.29)18.2507
2000's2 (14.29)29.6817
2010's3 (21.43)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Bironaĭte, DA; Chenas, NK; Kulis, IuIu1
Fujii, Y; Hayaishi, O; Hayashi, H; Watanabe, K1
Alhomida, AS; AlJafari, AA; Duhaiman, AS; Rabbani, N1
Di Giulio, RT; Hasspieler, BM1
Arscott, D; Blanchard, JS; Cenas, NK; Williams, CH1
Duhaiman, AS2
Adeli, K; Haffner, GD; Hasspieler, BM1
Penning, TM; Ratnam, K; Schlegel, BP1
Bazzi, MD; Duhaiman, AS; Rabbani, N1
Imamura, Y; Oginuma, M; Shimada, H1
Rao, Z; Shaw, N; Song, Y; Zhang, W; Zheng, Q; Zhou, W1
Araki, T; Fukuda, Y; Ohshima, T; Sakuraba, H; Shibata, T; Sone, T; Yoneda, K1
Abiko, Y; Cong, NL; Kumagai, Y1

Reviews

1 review(s) available for 9,10-phenanthrenequinone and nadp

ArticleYear
Chemical toxicology of reactive species in the atmosphere: two decades of progress in an electron acceptor and an electrophile.
    The Journal of toxicological sciences, 2016, Volume: 41, Issue:Special

    Topics: Air Pollutants; Antioxidant Response Elements; Asthma; NADP; Naphthoquinones; Oxidation-Reduction; Oxidative Stress; Phenanthrenes; Polycyclic Aromatic Hydrocarbons; Reactive Oxygen Species; Signal Transduction; Sulfhydryl Compounds; Vehicle Emissions

2016

Other Studies

13 other study(ies) available for 9,10-phenanthrenequinone and nadp

ArticleYear
[Nonphysiological redox-agents are reduced at the binding center of NADP(H) glutathione reductase].
    Biokhimiia (Moscow, Russia), 1992, Volume: 57, Issue:8

    Topics: Binding Sites; Ferricyanides; Glutathione Reductase; Indicators and Reagents; NADP; Naphthoquinones; Oxidation-Reduction; Phenanthrenes; Saccharomyces cerevisiae

1992
Enzymatic formation of prostaglandin F2 alpha in human brain.
    Neurochemical research, 1990, Volume: 15, Issue:4

    Topics: Amino Acids; Binding Sites; Brain; Catalysis; Dinoprost; Dinoprostone; Ethacrynic Acid; Humans; Hydrogen-Ion Concentration; Hydroxyprostaglandin Dehydrogenases; Indomethacin; Isoelectric Point; Molecular Weight; NADP; Phenanthrenes; Prostaglandins; Substrate Specificity; Triazines; Vitamin K

1990
Purification and characterization of zeta-crystallin from the camel lens.
    Biochemical and biophysical research communications, 1995, Oct-13, Volume: 215, Issue:2

    Topics: Animals; Camelus; Chromatography, Affinity; Chromatography, Gel; Crystallins; Electrophoresis, Polyacrylamide Gel; Hydrogen-Ion Concentration; Isoelectric Focusing; Kinetics; Lens, Crystalline; Molecular Weight; NADP; Oxidation-Reduction; Phenanthrenes; Thermodynamics

1995
Dicoumarol-sensitive NADPH: phenanthrenequinone oxidoreductase in channel catfish (Ictalurus punctatus).
    Toxicology and applied pharmacology, 1994, Volume: 125, Issue:2

    Topics: Animals; Cytosol; Dicumarol; Electrophoresis, Polyacrylamide Gel; Hydrogen Peroxide; Hydrogen-Ion Concentration; Ictaluridae; In Vitro Techniques; NADP; Phenanthrenes; Quinone Reductases; Stomach; Substrate Specificity; Superoxides

1994
Mechanism of reduction of quinones by Trypanosoma congolense trypanothione reductase.
    Biochemistry, 1994, Mar-08, Volume: 33, Issue:9

    Topics: Animals; Benzoquinones; Kinetics; NADH, NADPH Oxidoreductases; NADP; Oxidation-Reduction; Phenanthrenes; Quinones; Trypanosoma congolense

1994
Characterization of zeta-crystallin inhibition by juglone.
    Biochemical and biophysical research communications, 1996, Jan-26, Volume: 218, Issue:3

    Topics: Animals; Camelus; Crystallins; Enzyme Inhibitors; Guinea Pigs; Kinetics; NADP; Naphthoquinones; Phenanthrenes; Quinone Reductases; Structure-Activity Relationship; Substrate Specificity

1996
Influence of DT diaphorase on quinone-mediated genotoxicity in human and fish cell lines.
    Mutation research, 1996, May-17, Volume: 360, Issue:1

    Topics: Animals; Cell Line; Cytochrome c Group; Dicumarol; DNA Damage; DNA, Single-Stranded; Enzyme Inhibitors; Fishes; Humans; NAD; NAD(P)H Dehydrogenase (Quinone); NADP; Phenanthrenes; Quinones; Tumor Cells, Cultured; Vitamin K

1996
Inhibition of camel lens zeta-crystallin/NADPH:quinone oxidoreductase activity by Cibacron blue.
    Journal of enzyme inhibition, 1996, Volume: 10, Issue:4

    Topics: Animals; Binding Sites; Camelus; Crystallins; Electron Transport; Enzyme Inhibitors; Kinetics; Lens, Crystalline; NADP; Phenanthrenes; Quinone Reductases; Triazines

1996
Retention of NADPH-linked quinone reductase activity in an aldo-keto reductase following mutation of the catalytic tyrosine.
    Biochemistry, 1998, Aug-04, Volume: 37, Issue:31

    Topics: 3-Hydroxysteroid Dehydrogenases; Alcohol Oxidoreductases; Aldehyde Reductase; Aldo-Keto Reductases; Animals; Catalysis; Energy Transfer; Enzyme Activation; Hydrogen-Ion Concentration; Mutagenesis, Site-Directed; Mutagens; NAD(P)H Dehydrogenase (Quinone); NADP; Oxidation-Reduction; Phenanthrenes; Rats; Substrate Specificity; Tyrosine

1998
Inhibition of camel lens zeta-crystallin by aspirin and aspirin-like analgesics.
    The international journal of biochemistry & cell biology, 2002, Volume: 34, Issue:1

    Topics: Acetaminophen; Analgesics; Animals; Aspirin; Binding Sites; Binding, Competitive; Camelus; Crystallins; Ibuprofen; In Vitro Techniques; Kinetics; Lysine; NADP; Phenanthrenes; Pyridoxal Phosphate

2002
Involvement of carbonyl reductase in superoxide formation through redox cycling of adrenochrome and 9,10-phenanthrenequinone in pig heart.
    Chemico-biological interactions, 2005, Aug-15, Volume: 155, Issue:3

    Topics: Adrenochrome; Alcohol Oxidoreductases; Aldehyde Reductase; Aldo-Keto Reductases; Animals; Cytosol; Dicumarol; Enzyme Inhibitors; Heart; Hydrogen-Ion Concentration; In Vitro Techniques; Kinetics; Myocardium; NAD(P)H Dehydrogenase (Quinone); NADP; Oxidation-Reduction; Phenanthrenes; Pyridines; Retinaldehyde; Stereoisomerism; Superoxides; Sus scrofa; Vehicle Emissions

2005
Structural views of quinone oxidoreductase from Mycobacterium tuberculosis reveal large conformational changes induced by the co-factor.
    The FEBS journal, 2015, Volume: 282, Issue:14

    Topics: Bacterial Proteins; Benzoquinones; Binding Sites; Coenzymes; Crystallography, X-Ray; Models, Molecular; Mycobacterium tuberculosis; NADP; Phenanthrenes; Protein Conformation; Protein Multimerization; Quinone Reductases

2015
A novel NAD(P)H-dependent carbonyl reductase specifically expressed in the thyroidectomized chicken fatty liver: catalytic properties and crystal structure.
    The FEBS journal, 2015, Volume: 282, Issue:20

    Topics: Aldehyde Reductase; Aldo-Keto Reductases; Amino Acid Sequence; Amino Acid Substitution; Animals; Biocatalysis; Catalytic Domain; Chickens; Databases, Protein; Disease Models, Animal; Fatty Liver; Gene Expression Regulation, Enzymologic; Hypothyroidism; Liver; Molecular Sequence Data; Mutant Proteins; NADP; Phenanthrenes; Protein Conformation; Protein Stability; Protein Subunits; Recombinant Proteins; Tyrosine

2015