Discovery of Biphenyl Derivatives to Target Hsp70-Bim Protein-Protein Interaction in Chronic Myeloid Leukemia by Scaffold Hopping Strategy.
Maojun JiangHong ZhangYang SongFangkui YinZhiyuan HuXin LiYuying WangZheming WangYitong LiZihan WangYanxin ZhangSiyao WangShaohua LuGuanghong XuTing SongZiqian WangZhichao ZhangPublished in: Journal of medicinal chemistry (2024)
Hsp70-Bim protein-protein interaction (PPI) is the most recently identified specific target in chronic myeloid leukemia (CML) therapy. Herein, we developed a new class of Hsp70-Bim PPI inhibitors via scaffold hopping of S1g-10 , the most potent Hsp70-Bim PPI inhibitor thus far. Through structure-activity relationship (SAR) study, we obtained a biphenyl scaffold compound JL-15 with a 5.6-fold improvement in Hsp70-Bim PPI suppression ( K d = 123 vs 688 nM) and a 4-fold improvement in water solubility (29.42 vs 7.19 μg/mL) compared to S1g-10 . It maintains comparable apoptosis induction capability with S1g-10 against both TKI-sensitive and TKI-resistant CML cell lines in an Hsp70-Bim-dependent manner. Additionally, through SAR, 1 H- 15 N TRSOY-NMR, and molecular docking, we revealed that Lys319 is a "hot spot" in the Hsp70-Bim PPI interface. Collectively, these results provide a novel chemical scaffold and structural insights for the rational design of Hsp70-Bim PPI inhibitors.
Keyphrases
- protein protein
- chronic myeloid leukemia
- heat shock protein
- small molecule
- heat shock
- heat stress
- molecular docking
- structure activity relationship
- stem cells
- high resolution
- magnetic resonance
- endoplasmic reticulum stress
- molecular dynamics simulations
- cell proliferation
- advanced non small cell lung cancer
- mesenchymal stem cells
- photodynamic therapy
- cell therapy
- anti inflammatory