XenoSite

Amperozide cation

CHEBI
Amperozide cation Quinonation prediction
CCNC(=O)N1CC[NH+](CCCC(=C2C=CC(F)=CC2=O)c2ccc(F)cc2)CC1 N-Dealkylation prediction
NC(=O)N1CC[NH+](CCCC(=C2C=CC(F)=CC2=O)c2ccc(F)cc2)CC1 stable oxygenation prediction
NC(=O)N1CC[NH+](CCCC(=C2C=CC(F)=CC2=O)c2ccc(F)cc2)CC1 unstable oxygenation prediction
NC(=O)N1CC[NH+](CCCC(=C2C=CC(F)=CC2=O)c2ccc(F)cc2)CC1 dehydrogenation prediction
NC(=O)N1CC[NH+](CCCC(=C2C=CC(F)=CC2=O)c2ccc(F)cc2)CC1 reduction prediction
NC(=O)N1CC[NH+](CCCC(=C2C=CC(F)=CC2=O)c2ccc(F)cc2)CC1 hydrolysis prediction
NC(=O)N1CC[NH+](CCCC(c2ccc(F)cc2)C2C=CC(F)=CC2=O)CC1 gsh prediction
NC(=O)N1CC[NH+](CCCC(c2ccc(F)cc2)C2C=CC(F)=CC2=O)CC1 protein prediction
NC(=O)N1CC[NH+](CCCC(c2ccc(F)cc2)C2C=CC(F)=CC2=O)CC1 cyanide prediction
NC(=O)N1CC[NH+](CCCC(c2ccc(F)cc2)C2C=CC(F)=CC2=O)CC1 dna prediction
dna · 0.19
*C1=CC(=O)C(C(CCC[NH+]2CCN(C(N)=O)CC2)c2ccc(F)cc2)C=C1 |$DNA;;;;;;;;;;;;;;;;;;;;;;;;;;;$|
Probability scale from 0.0 to 1.0