Cytochrome P450 BM-3 from Bacillus megaterium

Enzyme Description

Extremophile
No
EC Number

Sequence

Length: 1048 amino acids
TIKEMPQPKTFGELKNLPLLNTDKPVQALMKIADELGEIFKFEAPGRVTRYLSSQRLIKEACDESRFDKNLSQALKFVRDFAGDGLFTSWTHEKNWKKAHNILLPSFSQQAMKGYHAMMVDIAVQLVQKWERLNADEHIEVPEDMTRLTLDTIGLCGFNYRFNSFYRDQPHPFITSMVRALDEAMNKLQRANPDDPAYDENKRQFQEDIKVMNDLVDKIIADRKASGEQSDDLLTHMLNGKDPETGEPLDDENIRYQIITFLIAGHETTSGLLSFALYFLVKNPHVLQKAAEEAARVLVDPVPSYKQVKQLKYVGMVLNEALRLWPTAPAFSLYAKEDTVLGGEYPLEKGDELMVLIPQLHRDKTIWGDDVEEFRPERFENPSAIPQHAFKPFGNGQRACIGQQFALHEATLVLGMMLKHFDFEDHTNYELDIKETLTLKPEGFVVKAKSKKIPLGGIPSPSTEQSAKKVRKKAENAHNTPLLVLYGSNMGTAEGTARDLADIAMSKGFAPQVATLDSHAGNLPREGAVLIVTASYNGHPPDNAKQFVDWLDQASADEVKGVRYSVFGCGDKNWATTYQKVPAFIDETLAAKGAENIADRGEADASDDFEGTYEEWREHMWSDVAAYFNLDIENSEDNKSTLSLQFVDSAADMPLAKMHGAFSTNVVASKELQQPGSARSTRHLEIELPKEASYQEGDHLGVIPRNYEGIVNRVTARFGLDASQQIRLEAEEEKLAHLPLAKTVSVEELLQYVELQDPVTRTQLRAMAAKTVCPPHKVELEALLEKQAYKEQVLAKRLTMLELLEKYPACEMKFSEFIALLPSIRPRYYSISSSPRVDEKQASITVSVVSGEAWSGYGEYKGIASNYLAELQEGDTITCFISTPQSEFTLPKDPETPLIMVGPGTGVAPFRGFVQARKQLKEQGQSLGEAHLYFGCRSPHEDYLYQEELENAQSEGIITLHTAFSRMPNQPKTYVQHVMEQDGKKLIELLDQGAHFYICGDGSQMAPAVEATLMKSYADVHQVSEADARLWLQQLEEKGRYAKDVWAG
Tuck Seng Wong et al. (2003) β€” Laboratory evolution of cytochrome P450 BM-3 monooxygenase for organic cosolvents
Biotechnology and Bioengineering  Β· doi:10.1002/bit.10896 β†—  Β· Activity - Classical
233 measurements
Database ID
UniProt: P14779 β†—
Sequence Annotation
Inferred - from protein name (first residue from UniProt sequence absent from the mature protein)
Protein Source
Recombinant, host bacterium Escherichia coli

Experimental Data (233 measurements)

233 measurements β€” page 2 of 12
Mutation Property Assay Solvent Solvent Volume Aqueous ReferenceWT Reference Measured Value Units Extraction method Data type Solution pH Temperature Substrate(s) Product(s) Cofactor(s) Shaking Comments
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 2 % v/v 100 β€” 94 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 3 % v/v 100 β€” 91 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 4 % v/v 100 β€” 76 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 5 % v/v 100 β€” 73 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 7.5 % v/v 100 β€” 41 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 10 % v/v 100 β€” 23 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 12.5 % v/v 100 β€” 8 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Dimethylformamide (DMF) 15 % v/v 100 β€” 2 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 1 % v/v 100 β€” 80 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 2 % v/v 100 β€” 83 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 3 % v/v 100 β€” 72 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 4 % v/v 100 β€” 61 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 5 % v/v 100 β€” 46 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 7.5 % v/v 100 β€” 19 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Acetonitrile 10 % v/v 100 β€” 0 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Ethanol 1 % v/v 100 β€” 99 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Ethanol 2.5 % v/v 100 β€” 101 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Ethanol 5 % v/v 100 β€” 68 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Ethanol 7.5 % v/v 100 β€” 50 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
WT Activity - Classical Activity measured by absorbance spectrophotometry (p-nitrophenol absorbance measurement, 410 nm) in the presence of organic solvent Ethanol 10 % v/v 100 β€” 37 % Digital Continuous ? ? Room temperature 0.5 mM p-Nitrophenoxylauric Acid Hydroxylated fatty acid , p-Nitrophenol ? mM NADP+ β€” Classical aqueous control (in %)
1 2 3 4 … 12

Mutations in this dataset (16)

WT F87A F87A/T235A/R471A/E494K/S1024E F87A/T235A/R471A/S1024R F87A/T235A/R471A/S1024T F87A/T235A/S1024R T235A/R471A/E494K/S1024 T235A/R471A/E494K/S1024E T235A/R471A/E494K/S1025 T235A/R471A/E494K/S1026 T235A/R471A/E494K/S1027 T235A/R471A/E494K/S1028 T235A/R471A/E494K/S1029 T235A/R471A/S1024R T235A/R471A/S1024T T235A/S1024R

Visualization : Activity β€” Classical

One bar per measurement. Colour = solvent, shade = solvent volume. β€” β€” β€” Reference value. Hover for details.

Mutation Effect

Mutation impact on enzyme stability and function in the presence of organic solvent: comparison of wild-type and mutant values in identical conditions.

Structure

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