Detail Information

P450 Protein:

P450 SymbolCYP79D2
Protein NameValine N-monooxygenase 2
Uniprot IDQ9M7B7
EC Number1.14.14.38; 1.14.14.39
SpeciesManihot esculenta (Cassava) (Jatropha manihot)
Txid 3983
P450 Protein Structure
Model Confidence (pLDDT)
Very high (>90)
High (90 > 70)
Low (70 > 50)
Very low (<50)
Subcellular LocationMicrosome membrane; Single-pass membrane protein
Protein Sequence GO

Reaction Scheme:

Chemical Conversion C6H13NO2 + C17H21N4O9P-2 + O2 → C6H13NO3 + C17H18N4O9P-3 + H2O + H+
Reaction TypeOxidoreduction
Chemical BondCH-NH2;Carboxyl
RheaID 30479

L-isoleucine

+

FMNH2

+

O2

CYP79D2

N-hydroxy-L-isoleucine

+

FMN

+

H2O

+

H+

Substrate Information:

Substrate Name L-isoleucine
Substrate Chemical FormulaC6H13NO2
Substrate PubChem CID6306
Substrate SmilesCC[C@H](C)[C@@H](C(=O)O)N
Substrate Structure
Substrate Name FMNH2
Substrate Chemical FormulaC17H21N4O9P-2
Substrate PubChem CID44229161
Substrate SmilesCC1=CC2=C(C=C1C)N(C3=C(N2)C(=O)NC(=O)N3)C[C@@H]([C@@H]([C@@H](COP(=O)([O-])[O-])O)O)O
Substrate Structure
Substrate Name O2
Substrate Chemical FormulaO2
Substrate PubChem CID977
Substrate CAS Number7782-44-7
Substrate SmilesO=O
Substrate Structure

Product Information:

Product Name N-hydroxy-L-isoleucine
Product Chemical FormulaC6H13NO3
Product PubChem CID49852348
Product SmilesCC[C@H](C)[C@@H](C(=O)O)NO
Product Structure
Product Name FMN
Product Chemical FormulaC17H18N4O9P-3
Product PubChem CID44229199
Product SmilesCC1=CC2=C(C=C1C)N(C3=NC(=NC(=O)C3=N2)[O-])C[C@@H]([C@@H]([C@@H](COP(=O)([O-])[O-])O)O)O
Product Structure
Product Name H2O
Product Chemical FormulaH2O
Product PubChem CID962
Product CAS Number7732-18-5
Product SmilesO
Product Structure
Product Name H+
Product Chemical FormulaH+
Product PubChem CID1038
Product CAS Number12408-02-5
Product Smiles[H+]
Product Structure

References:

Title: Cytochromes P-450 from cassava (Manihot esculenta Crantz) catalyzing the first steps in the biosynthesis of the cyanogenic glucosides linamarin and lotaustralin. Cloning, functional expression in Pichia pastoris, and substrate specificity of the isolated recombinant enzymes.
PMID: 10636899
Journal: The Journal of biological chemistry
Year: 2000/1/21

Contact zhy1001@alu.uestc.edu.cn or yangzhang@cdutcm.edu.cn
© Department of Bioinformatics