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Literature summary for 1.14.14.1 extracted from

  • Roccatano, D.; Wong, T.S.; Schwaneberg, U.; Zacharias, M.
    Toward understanding the inactivation mechanism of monooxygenase P450 BM-3 by organic cosolvents: a molecular dynamics simulation study (2006), Biopolymers, 83, 467-476.
    View publication on PubMed

Application

Application Comment Organism
additional information the enzyme is a target for improving the catalytic performance of P450 BM-3 toward nonnatural substrates of industrial importance in the presence of organic solvents or cosolvents for industrial applications Priestia megaterium

Protein Variants

Protein Variants Comment Organism
F87A site-directed mutagenesis, the mutant exhibits an altered regioselectivity and substrate specificity compared with wild-type, it has lower tolerance toward DMSO Priestia megaterium
additional information the enzyme is a target for improving the catalytic performance of P450 BM-3 toward nonnatural substrates of industrial importance in the presence of organic solvents or cosolvents for industrial applications Priestia megaterium

Metals/Ions

Metals/Ions Comment Organism Structure
Fe2+ in a catalytic cytochrome P450 ferric heme center Priestia megaterium

Organic Solvent Stability

Organic Solvent Comment Organism
DMSO inactivation mechanism, the mutant F87A is more sensitive to DMSO than the wild-type enzyme due to the absence of the phenyl ring in the mutant which promotes interactions of the DMSO molecule with the heme iron resulting in water displacement by DMSO at the catalytic heme center, box by stacking equilibrated boxes of solvent molecules to, modeling of DMSO in the active site channel, overview Priestia megaterium
additional information inactivation mechanism of monooxygenase P450 BM-3 by organic cosolvents: a molecular dynamics simulation study using the X-ray P450 BM-3 crystal structure, PDB code 1BU7 Priestia megaterium

Organism

Organism UniProt Comment Textmining
Priestia megaterium P14779
-
-

Subunits

Subunits Comment Organism
More structure alteration due to organic solvents, analysis by molecular dynamics simulation study using the X-ray P450 BM-3 crystal structure, PDB code 1BU7 Priestia megaterium

Synonyms

Synonyms Comment Organism
monooxygenase P450 BM-3
-
Priestia megaterium