Discovery of LC-MI-3: A Potent and Orally Bioavailable Degrader of Interleukin-1 Receptor-Associated Kinase 4 for the Treatment of Inflammatory Diseases.
Lingfeng ChenRuixiang LuoLin MaYing XuJiaqi CaoZheng JiangShiyan ChenXiaohao HuangMingwan ZhangLei ZhengYawen ZhangLina YinJie YuXiaochun ZhengLulu ZhengPing HuangGuang LiangPublished in: Journal of medicinal chemistry (2024)
Interleukin-1 receptor-associated kinase 4 (IRAK4) is a promising therapeutic target in inflammation-related diseases. However, the inhibition of IRAK4 kinase activity may lead to moderate anti-inflammatory efficacy owing to the dual role of IRAK4 as an active kinase and a scaffolding protein. Herein, we report the design, synthesis, and biological evaluation of an efficient and selective IRAK4 proteolysis-targeting chimeric molecule that eliminates IRAK4 scaffolding functions. The most potent compound, LC-MI-3, effectively degraded cellular IRAK4, with a half-maximal degradation concentration of 47.3 nM. LC-MI-3 effectively inhibited the activation of downstream nuclear factor-κB signaling and exerted more potent pharmacological effects than traditional kinase inhibitors. Furthermore, LC-MI-3 exerted significant therapeutic effects in lipopolysaccharide- and Escherichia coli -induced acute and chronic inflammatory skin models compared with kinase inhibitors in vivo . Therefore, LC-MI-3 is a candidate IRAK4 degrader in alternative targeting strategies and advanced drug development.
Keyphrases
- anti inflammatory
- simultaneous determination
- nuclear factor
- escherichia coli
- oxidative stress
- toll like receptor
- protein kinase
- mass spectrometry
- tyrosine kinase
- liquid chromatography
- photodynamic therapy
- small molecule
- heart rate
- binding protein
- solid phase extraction
- cell therapy
- inflammatory response
- high intensity
- mesenchymal stem cells
- combination therapy
- high resolution
- drug delivery
- resistance training
- tandem mass spectrometry
- body composition
- multidrug resistant
- candida albicans
- amino acid
- smoking cessation
- soft tissue
- biofilm formation