Lu Tian, Li Yong, Lu Wenchao, Spitters Twgm, Fang Xueyu, Wang Jun, Cai Simian, Gao Jing, Zhou Yanting, Duan Zhe, Xiong Huan, Liu Liping, Li Qi, Jiang Hualiang, Chen Kaixian, Zhou Hu, Lin Hua, Feng Huijin, Zhou Bing, Antos Christopher L, Luo Cheng
School of Chinese Materia Medica, Nanjing University of Chinese Medicine, Nanjing 210023, China.
The Center for Chemical Biology, Drug Discovery and Design Center, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Acta Pharm Sin B. 2021 Oct;11(10):3206-3219. doi: 10.1016/j.apsb.2021.04.015. Epub 2021 May 1.
The TEA domain (TEAD) family proteins (TEAD1‒4) are essential transcription factors that control cell differentiation and organ size in the Hippo pathway. Although the sequences and structures of TEAD family proteins are highly conserved, each TEAD isoform has unique physiological and pathological functions. Therefore, the development and discovery of subtype selective inhibitors for TEAD protein will provide important chemical probes for the TEAD-related function studies in development and diseases. Here, we identified a novel TEAD1/3 covalent inhibitor (DC-TEADin1072) with biochemical IC values of 0.61 ± 0.02 and 0.58 ± 0.12 μmol/L against TEAD1 and TEAD3, respectively. Further chemical optimization based on DC-TEAD in 1072 yielded a selective TEAD3 inhibitor DC-TEAD3in03 with the IC value of 0.16 ± 0.03 μmol/L, which shows 100-fold selectivity over other TEAD isoforms in activity-based protein profiling (ABPP) assays. In cells, DC-TEAD3in03 showed selective inhibitory effect on TEAD3 in GAL4-TEAD (1-4) reporter assays with the IC value of 1.15 μmol/L. When administered to zebrafish juveniles, experiments showed that DC-TEAD3in03 reduced the growth rate of zebrafish caudal fins, indicating the importance of TEAD3 activity in controlling proportional growth of vertebrate appendages.
TEA结构域(TEAD)家族蛋白(TEAD1-4)是重要的转录因子,在Hippo信号通路中控制细胞分化和器官大小。尽管TEAD家族蛋白的序列和结构高度保守,但每种TEAD亚型都具有独特的生理和病理功能。因此,开发和发现TEAD蛋白的亚型选择性抑制剂将为发育和疾病中与TEAD相关的功能研究提供重要的化学探针。在此,我们鉴定了一种新型的TEAD1/3共价抑制剂(DC-TEADin1072),其对TEAD1和TEAD3的生化IC值分别为0.61±0.02和0.58±0.12μmol/L。基于DC-TEADin1072进行进一步的化学优化,得到了一种选择性TEAD3抑制剂DC-TEAD3in03,其IC值为0.16±0.03μmol/L,在基于活性的蛋白质谱分析(ABPP)试验中对其他TEAD亚型的选择性高100倍。在细胞中,DC-TEAD3in03在GAL4-TEAD(1-4)报告基因试验中对TEAD3显示出选择性抑制作用,IC值为1.15μmol/L。当将其施用于斑马鱼幼体时,实验表明DC-TEAD3in03降低了斑马鱼尾鳍的生长速率,这表明TEAD3活性在控制脊椎动物附肢的比例生长中具有重要作用。