Ligand 3-Methyl-4-nitrophenol
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Basic Ligand Information
Molecular Structure

C7H7NO3
3-Methyl-4-nitrophenol
PIIZYNQECPTVEO-UHFFFAOYSA-N
Roles as Enzyme Ligand
In Vivo Substrate in Enzyme-catalyzed Reactions (1 result)
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3-methyl-4-nitrophenol + NADPH + H+ + O2 = 2-methyl-1,4-benzoquinone + nitrite + NADP+ + H2O
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Substrate in Enzyme-catalyzed Reactions (3 results)
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3-methyl-4-nitrophenol + NADH + O2 = ?
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3-methyl-4-nitrophenol + NADPH + H+ + O2 = 2-methyl-1,4-benzoquinone + nitrite + NADP+ + H2O
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3-methyl-4-nitrophenol + O2 + NADPH + H+ = 2-methyl-4-benzoquinone + nitrite + H2O + NADP+
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Product in Enzyme-catalyzed Reactions (1 result)
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fenitrothion + H2O = O,O-diethylphosphorothioate + 3-methyl-4-nitrophenol
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Inhibitor in Enzyme-catalyzed Reactions (1 result)
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Enzyme Kinetic Parameters
KM Value (1 result)
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0.0203
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pH and temperature not specified in the publication
References & Links
Literature References (4)
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The ribonucleotide reductases - a unique group of metalloenzymes essential for cell proliferation
1983
Lammers, M.; Follmann, H.
Struct. Bonding
54
27-91
Biodegradation of 2,4-dinitrotoluene by a Pseudomonas sp.
1991
Spanggord, R.J.; Spain, J.C.; Nishino, S.F.; Mortelmans, K.E.
Appl. Environ. Microbiol.
57
3200-3205
Protein engineering of the 4-methyl-5-nitrocatechol monooxygenase from Burkholderia sp. strain DNT for enhanced degradation of nitroaromatics
2006
Leungsakul, T.; Johnson, G.R.; Wood, T.K.
Appl. Environ. Microbiol.
72
3933-3939
Biochemical characterization of 3-methyl-4-nitrophenol degradation in Burkholderia sp. strain SJ98
2016
Min, J.; Lu, Y.; Hu, X.; Zhou, N.Y.
Front. Microbiol.
7
791
Links to other databases for 3-Methyl-4-nitrophenol