INY-03-041
目录号 : GC65559INY-03-041 是一种有效且高度选择性的基于 PROTAC 的泛-AKT 降解物,由与来那度胺 (Cereblon 配体) 偶联的 ATP 竞争性 AKT 抑制剂 GDC-0068 组成。 INY-03-041 抑制 AKT1,AKT2 和 AKT3,IC50 分别为 2.0 nM,6.8 nM 和 3.5 nM。
Cas No.:2503017-97-6
Sample solution is provided at 25 µL, 10mM.
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Akt1 2.0nM(IC50) | Akt2 6.8nM(IC50) | Akt3 3.5nM(IC50) | Cereblon
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INY-03-041 is a potent, highly selective and PROTAC-based pan-AKT degrader consisting of the ATP-competitive AKT inhibitor GDC-0068 conjugated to Lenalidomide (Cereblon ligand). INY-03-041 inhibits AKT1, AKT2 and AKT3 with IC50s of 2.0 nM, 6.8 nM and 3.5 nM, respectively[1].
INY-03-041 (10-1000 nM; 2-24 hours; MDA-MB-468 cells) treatment induces potent degradation of all three AKT isoforms in a dose-dependent manner after a 12-h treatment, with maximal degradation observed between 100 and 250 nM. At concentrations of 500 nM and greater, AKT degradation is diminished. Treatment with 250 nM of INY-03-041 over time reveals partial degradation of all AKT isoforms within 4 h and progressive loss of AKT abundance out to 24 h[1].INY-03-041 exhibits potent in vitro inhibition of S6K1 (IC50 =37.3 nM) and PKG1 (IC50 = 33.2 nM)[1].INY-03-041 displays enhanced anti-proliferative effects compared with GDC-0068 in MDA-MB-468 and HCC1937 cells[1].
[1]. You I, et al. Discovery of an AKT Degrader with Prolonged Inhibition of Downstream Signaling. Cell Chem Biol. 2020 Jan 16;27(1):66-73.e7.
Cas No. | 2503017-97-6 | SDF | Download SDF |
分子式 | C44H56ClN7O5 | 分子量 | 798.41 |
溶解度 | DMSO : 115 mg/mL (144.04 mM; ultrasonic and warming and heat to 80°C) | 储存条件 | -20°C, away from moisture |
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1 mg | 5 mg | 10 mg | |
1 mM | 1.2525 mL | 6.2624 mL | 12.5249 mL |
5 mM | 0.2505 mL | 1.2525 mL | 2.505 mL |
10 mM | 0.1252 mL | 0.6262 mL | 1.2525 mL |
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Discovery of an AKT Degrader with Prolonged Inhibition of Downstream Signaling
Cell Chem Biol 2020 Jan 16;27(1):66-73.e7.PMID:31859249DOI:PMC6980747
The PI3K/AKT signaling cascade is one of the most commonly dysregulated pathways in cancer, with over half of tumors exhibiting aberrant AKT activation. Although potent small-molecule AKT inhibitors have entered clinical trials, robust and durable therapeutic responses have not been observed. As an alternative strategy to target AKT, we report the development of INY-03-041, a pan-AKT degrader consisting of the ATP-competitive AKT inhibitor GDC-0068 conjugated to lenalidomide, a recruiter of the E3 ubiquitin ligase substrate adaptor Cereblon (CRBN). INY-03-041 induced potent degradation of all three AKT isoforms and displayed enhanced anti-proliferative effects relative to GDC-0068. Notably, INY-03-041 promoted sustained AKT degradation and inhibition of downstream signaling effects for up to 96 h, even after compound washout. Our findings suggest that AKT degradation may confer prolonged pharmacological effects compared with inhibition, and highlight the potential advantages of AKT-targeted degradation.