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Silver mismatch Oxidation

CYP716C11

Centella asiatica CYP716C

Apiaceae

Substrate reaction site Product reaction site MCS substructure diff highlighting · RDKit atom mapping
Substrate
corosolic acid
PubChem ↗ C[C@@H]1CC[C@@]2(CC[C@@]3(C(=CC[C@H]4[C@]3(CC[C@@H]5[C@@]4(C[C@…
CYP716C11
ΔMass: +0.0000 Da mismatch
Product
maslinic acid
PubChem ↗ C[C@@]12CC[C@@H]3[C@@]([C@H]1CC=C4[C@]2(CC[C@@]5([C@H]4CC(CC5)(…

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; Positive correlation between CaCYP716C11 and corosolic/maslinic acids; sequence identity 100% to CaCYP716C11.

Reaction & quality gates

Mechanism
Oxidation
Evidence type
In vivo
Confidence
High
Data tier
Silver
mass=mismatch
Substrate class
Organic acids
Product class
Organic acids

Literature & public identifiers

PubMed
PMID:38283979 ↗
DOI
10.3389/fpls.2023.1295186 ↗
UniProt
A0A1I9Q5Y7 ↗
GenBank
NCBI TaxID
48106 ↗

Integrated metabolome and transcriptome analysis identifies candidate genes involved in triterpenoid saponin biosynthesis in leaves of <i>Centella asiatica</i> (L.) Urban.