UCSF

ZINC13672572

Substance Information

In ZINC since Heavy atoms Benign functionality
June 23rd, 2008 26 No

Download: MOL2 SDF SMILES Flexibase

Physical Representations

Type pH range xlogP Des A‑Pol Apolar desolvation (kcal/mol) Des Pol Polar desolvation (kcal/mol) H Don H-bond donors H Acc H-bond acceptors Chg Net charge tPSA (Ų) MWT Molecular weight (g/mol) RB Rotatable bonds DL
Ref Reference (pH 7) 4.24 3.06 -16.18 5 6 0 98 412.365 5
Hi High (pH 8-9.5) 2.71 3.23 -38.62 4 6 -1 97 411.357 5

Activity (Go SEA)

Clustered Target Annotations
Code Description Organism Class Affinity (nM) LE (kcal/mol/atom) Type
CAH1-5-E Carbonic Anhydrase I (cluster #5 Of 12), Eukaryotic Eukaryotes 84 0.38 Binding ≤ 10μM
CAH12-1-E Carbonic Anhydrase XII (cluster #1 Of 9), Eukaryotic Eukaryotes 18 0.42 Binding ≤ 10μM
CAH2-6-E Carbonic Anhydrase II (cluster #6 Of 15), Eukaryotic Eukaryotes 25 0.41 Binding ≤ 10μM
CAH9-1-E Carbonic Anhydrase IX (cluster #1 Of 11), Eukaryotic Eukaryotes 15 0.42 Binding ≤ 10μM
ChEMBL Target Annotations
Uniprot Swissprot Description Affinity (nM) LE (kcal/mol/atom) Type
CAH1_HUMAN P00915 Carbonic Anhydrase I, Human 78 0.38 Binding ≤ 1μM
CAH2_HUMAN P00918 Carbonic Anhydrase II, Human 19 0.42 Binding ≤ 1μM
CAH9_HUMAN Q16790 Carbonic Anhydrase IX, Human 15 0.42 Binding ≤ 1μM
CAH12_HUMAN O43570 Carbonic Anhydrase XII, Human 18 0.42 Binding ≤ 1μM
CAH1_HUMAN P00915 Carbonic Anhydrase I, Human 78 0.38 Binding ≤ 10μM
CAH2_HUMAN P00918 Carbonic Anhydrase II, Human 19 0.42 Binding ≤ 10μM
CAH9_HUMAN Q16790 Carbonic Anhydrase IX, Human 15 0.42 Binding ≤ 10μM
CAH12_HUMAN O43570 Carbonic Anhydrase XII, Human 18 0.42 Binding ≤ 10μM

Reactome Annotations from Targets (via Uniprot)

Description Species
Erythrocytes take up carbon dioxide and release oxygen
Erythrocytes take up oxygen and release carbon dioxide
Regulation of gene expression by Hypoxia-inducible Factor
Reversible hydration of carbon dioxide

Analogs ( Draw Identity 99% 90% 80% 70% )

No pre-computed analogs available. Try a structural similarity search.