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Structure-based design of potent and selective inhibitors targeting RIPK3 for eliminating on-target toxicity in vitro

Nature Communications. 2025-05; 
Haixia Su, Guofeng Chen, Hang Xie, Wanchen Li, Muya Xiong, Jian He, Hangchen Hu, Wenfeng Zhao, Qiang Shao, Minjun Li, Qiang Zhao, Yechun Xu State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, University of Chinese Academy of Sciences, Shanghai, 201203, China.
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Protein Electrophoresis and Western Protein samples were separated by 10% SDS-PAGE gel electrophoresis, and the proteins were transferred onto PVDF membranes using a rapid wet transfer system (eBlot L1, GenScript). Get A Quote

摘要

The essential role of RIPK3 in necroptosis makes its inhibition a promising therapeutic strategy. However, the development of RIPK3 inhibitors has been hampered by on-target apoptosis and limited kinase selectivity. Inspired by the R69H mutation, which prevents on-target apoptosis by disrupting RIPK3 dimerization, we design LK-series inhibitors that effectively inhibit RIPK3 in biochemical assays and block TNF-α-induced necroptosis in both mouse L929 and human HT29 cells without inducing apoptosis. The representative compound, LK01003, shows high selectivity across a panel of 379 kinases. Our structural studies reveal that LK compounds act as Type I1/2 inhibitors, engaging a unique hydrophobic site and stabili... More

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