Division of Cardiovascular Medicine, Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232, USA; College of Veterinary Medicine, Western University of Health Sciences, Pomona, CA 91766, USA.
Cell Rep. 2013 Sep 12;4(5):898-904. doi: 10.1016/j.celrep.2013.07.047. Epub 2013 Sep 5.
The canonical Wnt signaling pathway, mediated by the transcription factor β-catenin, plays critical roles in embryonic development and represents an important therapeutic target. In a zebrafish-based in vivo screen for small molecules that specifically perturb embryonic dorsoventral patterning, we discovered a compound named windorphen that selectively blocks the Wnt signal required for ventral development. Windorphen exhibits remarkable specificity toward β-catenin-1 function, indicating that the two β-catenin isoforms found in zebrafish are not functionally redundant. We show that windorphen is a selective inhibitor of p300 histone acetyltransferase, a coactivator that associates with β-catenin. Finally, windorphen robustly and selectively kills cancer cells that harbor Wnt-activating mutations, supporting the therapeutic potential of this Wnt inhibitor class.
经典的 Wnt 信号通路由转录因子β-catenin 介导,在胚胎发育中发挥着关键作用,是一个重要的治疗靶点。在一项基于斑马鱼的体内筛选实验中,我们发现了一种名为 windorphen 的小分子,它可以特异性地干扰胚胎背腹模式形成过程中的 Wnt 信号。windorphen 选择性地阻断了腹侧发育所必需的 Wnt 信号,对β-catenin-1 的功能具有显著的特异性,表明在斑马鱼中发现的两种β-catenin 同工型在功能上并非冗余。我们证明 windorphen 是 p300 组蛋白乙酰转移酶的选择性抑制剂,p300 是与β-catenin 结合的共激活因子。最后,windorphen 能够强有力且选择性地杀死携带 Wnt 激活突变的癌细胞,支持了这种 Wnt 抑制剂类药物的治疗潜力。