UCSF

ZINC26577968

Substance Information

In ZINC since Heavy atoms Benign functionality
February 8th, 2009 38 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) 4.62 11.15 -13.21 2 7 0 97 666.842 4

Activity (Go SEA)

Clustered Target Annotations
Code Description Organism Class Affinity (nM) LE (kcal/mol/atom) Type
FNTA-1-E Protein Farnesyltransferase/geranylgeranyltransferase Type I Alpha Subunit (cluster #1 Of 3), Eukaryotic Eukaryotes 3 0.31 Binding ≤ 10μM
FNTB-1-E Protein Farnesyltransferase Beta Subunit (cluster #1 Of 3), Eukaryotic Eukaryotes 3 0.31 Binding ≤ 10μM
FNTA-1-E Protein Farnesyltransferase/geranylgeranyltransferase Type I Alpha Subunit (cluster #1 Of 2), Eukaryotic Eukaryotes 10 0.29 Functional ≤ 10μM
FNTB-1-E Protein Farnesyltransferase Beta Subunit (cluster #1 Of 2), Eukaryotic Eukaryotes 10 0.29 Functional ≤ 10μM
Z80106-1-O COS-1 (Kidney Cells) (cluster #1 Of 1), Other Other 85 0.26 Functional ≤ 10μM
ChEMBL Target Annotations
Uniprot Swissprot Description Affinity (nM) LE (kcal/mol/atom) Type
FNTB_HUMAN P49356 Protein Farnesyltransferase Beta Subunit, Human 2.7 0.32 Binding ≤ 1μM
FNTA_HUMAN P49354 Protein Farnesyltransferase/geranylgeranyltransferase Type I Alpha Subunit, Human 2.7 0.32 Binding ≤ 1μM
FNTB_HUMAN P49356 Protein Farnesyltransferase Beta Subunit, Human 2.7 0.32 Binding ≤ 10μM
FNTA_HUMAN P49354 Protein Farnesyltransferase/geranylgeranyltransferase Type I Alpha Subunit, Human 2.7 0.32 Binding ≤ 10μM
Z80106 Z80106 COS-1 (Kidney Cells) 10 0.29 Functional ≤ 10μM
FNTB_HUMAN P49356 Protein Farnesyltransferase Beta Subunit, Human 10 0.29 Functional ≤ 10μM
FNTA_HUMAN P49354 Protein Farnesyltransferase/geranylgeranyltransferase Type I Alpha Subunit, Human 10 0.29 Functional ≤ 10μM

Reactome Annotations from Targets (via Uniprot)

Description Species
Apoptotic cleavage of cellular proteins
Inactivation, recovery and regulation of the phototransduction cascade

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