Target
Oxysterols receptor LXR-alpha
Ligand
BDBM27172
Substrate
biotinylated SRC-1 peptide
Meas. Tech.
Fluorescence Resonance Energy Transfer (FRET) Ligand Sensing Assay (LiSA)
pH
7.5±n/a
Temperature
295.15±n/a K
EC50
39±n/a nM
Comments
57% efficacy.
Citation
 Washburn, DGHoang, THCampobasso, NSmallwood, AParks, DJWebb, CLFrank, KANord, MDuraiswami, CEvans, CJaye, MThompson, SK Synthesis and SAR of potent LXR agonists containing an indole pharmacophore. Bioorg Med Chem Lett 19:1097-100 (2009) [PubMed]  Article 
Target
Name:
Oxysterols receptor LXR-alpha
Synonyms:
LXRA | Liver X Receptor alpha (LXR-alpha) | Liver X receptor alpha | Liver X receptor alpha (LXRA) | Liver X receptor alpha (NR1H3) | Liver X, LXR alpha | NR1H3 | NR1H3_HUMAN | Nuclear orphan receptor LXR-alpha | Nuclear receptor subfamily 1 group H member 3
Type:
Enzyme Catalytic Domain
Mol. Mass.:
50403.85
Organism:
Homo sapiens (Human)
Description:
Q13133
Residue:
447
Sequence:
MSLWLGAPVPDIPPDSAVELWKPGAQDASSQAQGGSSCILREEARMPHSAGGTAGVGLEAAEPTALLTRAEPPSEPTEIRPQKRKKGPAPKMLGNELCSVCGDKASGFHYNVLSCEGCKGFFRRSVIKGAHYICHSGGHCPMDTYMRRKCQECRLRKCRQAGMREECVLSEEQIRLKKLKRQEEEQAHATSLPPRASSPPQILPQLSPEQLGMIEKLVAAQQQCNRRSFSDRLRVTPWPMAPDPHSREARQQRFAHFTELAIVSVQEIVDFAKQLPGFLQLSREDQIALLKTSAIEVMLLETSRRYNPGSESITFLKDFSYNREDFAKAGLQVEFINPIFEFSRAMNELQLNDAEFALLIAISIFSADRPNVQDQLQVERLQHTYVEALHAYVSIHHPHDRLMFPRMLMKLVSLRTLSSVHSEQVFALRLQDKKLPPLLSEIWDVHE
  
Inhibitor
Name:
BDBM27172
Synonyms:
1H-indol-1-yl tertiary amine, 16 | {[2-chloro-3-(trifluoromethyl)phenyl]methyl}(2,2-diphenylethyl){3-[(1-methyl-1H-indol-4-yl)oxy]propyl}amine
Type:
Small organic molecule
Emp. Form.:
C34H32ClF3N2O
Mol. Mass.:
577.079
SMILES:
Cn1ccc2c(OCCCN(CC(c3ccccc3)c3ccccc3)Cc3cccc(c3Cl)C(F)(F)F)cccc12
Structure:
Search PDB for entries with ligand similarity:
Substrate
Name:
biotinylated SRC-1 peptide
Synonyms:
n/a
Type:
Peptide
Mol. Mass.:
3157.52
Organism:
n/a
Description:
A biotinylated peptide comprises amino acids 675-699 of steroid receptor coactivator 1 (SRC1).
Residue:
28
Sequence:
CPSSHSSLTERHKILHRLLQEGSPSCNH