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Bronze no_smiles Oxidation

CYP712K2

Tripterygium wilfordii CYP712K

Celastraceae

Substrate reaction site Product reaction site MCS substructure diff highlighting · RDKit atom mapping
Substrate
celastrol precursor
PubChem ↗ Crowdsource substrate structure
CYP712K2
ΔMass: no_smiles Missing dual SMILES or RDKit not validated
Product
celastrol
PubChem ↗ CC1=C(C(=O)C=C2C1=CC=C3[C@]2(CC[C@@]4([C@@]3(CC[C@@]5([C@H]4C[C…

Evidence trail

Excerpts are machine-extracted plain text for biochemical provenance. Follow DOI / PubMed links for the primary literature; publisher figures and PDF images are not displayed here.

Source text excerpt ation; ation; TwCYP712K1 and TwCYP712K2 are involved in celastrol biosynthesis in Tripterygium wilfordii (Table 1).

Reaction & quality gates

Mechanism
Oxidation
Evidence type
Pathway_inference
Confidence
High
Data tier
Bronze
evidence=Pathway_inference
Substrate class
Other
Product class
Other

Literature & public identifiers

PubMed
PMID:40364345 ↗
DOI
10.3390/plants14091316 ↗
UniProt
QYZ87004.1 ↗
GenBank
CYP712K2 ↗
NCBI TaxID
458696 ↗

Application and Progress of Genomics in Deciphering the Genetic Regulation Mechanisms of Plant Secondary Metabolites.