For research use only. Not for therapeutic Use.
GNE-781 is an orally active, highly potent and selective CBP inhibitor with an IC50 of 0.94 nM in TR-FRET assay. GNE-781 also inhibits BRET and BRD4(1) with IC50s of 6.2 nM and 5100 nM, respectively. GNE-781 displays antitumor activity in an MOLM-16 AML xenograft model[1].
GNE-781 is a highly advanced potent and selective bromodomain inhibitor of cyclic adenosine monophosphate response element binding protein, binding protein (CBP). GNE-781 reduces FOXP3 (forkhead box P3) transcript levels. Examination of a subset of bromodomains reveals that GNE-781 is exquisitely selective for CBP/P300 and is remarkably selective for CBP (5425-fold) and P300 (4250-fold). GNE-781 demonstrates an appropriate balance of cell potency, selectivity (5425-fold over BRD4(1)) [1].
GNE-781 (3-30 mg/kg; p.o.; twice daily for 21 days) has tumor growth inhibition (%TGI) is 73%, 71%, and 89% at 3, 10, and 30 mg/kg, respectively in SCID beige mice with MOLM-16 AML xenografts[1].
GNE-781 decreases Foxp3 transcript levels in a dose dependent manner. GNE-781 (3-30 mg/kg) suppresses MYC at doses as low as 3 mg/kg at 2 and 8 h, with maximal suppression at 10 and 30 mg/kg at 2 h (87% and 88% inhibition, respectively)[1].
Catalog Number | I011859 |
CAS Number | 1936422-33-1 |
Synonyms | 3-[7-(difluoromethyl)-6-(1-methylpyrazol-4-yl)-3,4-dihydro-2H-quinolin-1-yl]-N-methyl-1-(oxan-4-yl)-6,7-dihydro-4H-pyrazolo[4,3-c]pyridine-5-carboxamide |
Molecular Formula | C27H33F2N7O2 |
Purity | ≥95% |
InChI | InChI=1S/C27H33F2N7O2/c1-30-27(37)34-9-5-23-22(16-34)26(32-36(23)19-6-10-38-11-7-19)35-8-3-4-17-12-20(18-14-31-33(2)15-18)21(25(28)29)13-24(17)35/h12-15,19,25H,3-11,16H2,1-2H3,(H,30,37) |
InChIKey | CQCWHSDMJBAGDC-UHFFFAOYSA-N |
SMILES | CNC(=O)N1CCC2=C(C1)C(=NN2C3CCOCC3)N4CCCC5=CC(=C(C=C54)C(F)F)C6=CN(N=C6)C |
Reference | [1]. Romero FA, et al. GNE-781, A Highly Advanced Potent and Selective Bromodomain Inhibitor of Cyclic Adenosine Monophosphate Response Element Binding Protein, Binding Protein (CBP). J Med Chem. 2017 Nov 22;60(22):9162-9183. |