Department of Chemical Biology, Max Planck Institute of Molecular Physiology, Otto-Hahn Straße 11, 44227 Dortmund, Germany.
Department of Chemical Biology, AstraZeneca-Max Planck Institute Satellite Unit, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.
J Med Chem. 2020 Oct 22;63(20):11972-11989. doi: 10.1021/acs.jmedchem.0c01275. Epub 2020 Oct 1.
Transcriptional enhanced associate domain (TEAD) transcription factors together with coactivators and corepressors modulate the expression of genes that regulate fundamental processes, such as organogenesis and cell growth, and elevated TEAD activity is associated with tumorigenesis. Hence, novel modulators of TEAD and methods for their identification are in high demand. We describe the development of a new "thiol conjugation assay" for identification of novel small molecules that bind to the TEAD central pocket. The assay monitors prevention of covalent binding of a fluorescence turn-on probe to a cysteine in the central pocket by small molecules. Screening of a collection of compounds revealed kojic acid analogues as TEAD inhibitors, which covalently target the cysteine in the central pocket, block the interaction with coactivator yes-associated protein with nanomolar apparent IC values, and reduce TEAD target gene expression. This methodology promises to enable new medicinal chemistry programs aimed at the modulation of TEAD activity.
转录增强相关结构域 (TEAD) 转录因子与共激活因子和核心抑制因子一起调节基因的表达,这些基因调节基本过程,如器官发生和细胞生长,而 TEAD 活性升高与肿瘤发生有关。因此,新型 TEAD 调节剂及其鉴定方法的需求很高。我们描述了一种新的“硫醇缀合测定法”的开发,用于鉴定与 TEAD 中心口袋结合的新型小分子。该测定法监测小分子对小分子结合到中心口袋中的半胱氨酸的共价结合的阻止作用。对化合物库的筛选显示,曲酸类似物是 TEAD 抑制剂,它们共价靶向中心口袋中的半胱氨酸,以纳摩尔的表观 IC 值阻断与共激活因子 yes 相关蛋白的相互作用,并降低 TEAD 靶基因的表达。这种方法有望实现新的药物化学项目,旨在调节 TEAD 活性。