Structure-Based Optimization of 2-Aminopyrimidine Derivatives as Potent Multi-target FLT3/CHK1/IRAK4 Inhibitors for Acute Myeloid Leukemia
Xuemei Li, Kailong Jiang, Luyao Zhang, Xinyan Lan, Xiaozhen Chen, Ran Xu, Yue Gao, Peipei Wang, Xiaobei Hu, Yubo Zhou, Jia Li, Tao LiuAbstract
The efficacy of FLT3 inhibitors is limited by resistance. Co-inhibiting FLT3 and CHK1 can overcome FLT3i resistance, and IRAK4 signaling contributes to leukemic cell survival in FLT3-mutant acute myeloid leukemia (AML). We discovered a novel series of 2-aminopyrimidine derivatives as potent multi-target FLT3/CHK1/IRAK4 inhibitors. Among them, compound 33 exhibited potent activity against FLT3-WT (IC50 = 5.05 nM), FLT3-D835Y (IC50 = 2.99 nM), CHK1 (IC50 = 33.32 nM), and IRAK4 (IC50 = 15.94 nM), with 85-fold selectivity over c-KIT. Moreover, it potently inhibited FLT3-mutant BaF3 cells and blocked FLT3/CHK1/IRAK4 signaling, upregulating p53/p21 and downregulating PD-L1. It overcame cytokine-induced resistance in MV-4-11 cells. In vivo, 33 significantly suppressed tumor growth in MV-4-11 xenografts (TGI = 84.96% at 5 mg/kg) and prolonged survival (from 40.5 days to 61.5 days) in a disseminated AML model without toxicity. These results demonstrate that 33 is a promising multi-target inhibitor candidate for FLT3-mutant AML.