Department of Cancer Biology, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.
Robert J. Tomsich Pathology and Laboratory Medicine Institute, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.
Molecules. 2020 Dec 18;25(24):6001. doi: 10.3390/molecules25246001.
The identification of protein-protein interaction disruptors (PPIDs) that disrupt the YAP/TAZ-TEAD interaction has gained considerable momentum. Several studies have shown that YAP/TAZ are no longer oncogenic when their interaction with the TEAD family of transcription factors is disrupted. The transcriptional co-regulator YAP (its homolog TAZ) interact with the surface pockets of TEADs. Peptidomimetic modalities like cystine-dense peptides and YAP cyclic and linear peptides exploit surface pockets (interface 2 and interface 3) on TEADs and function as PPIDs. The TEAD surface might pose a challenge for generating an effective small molecule PPID. Interestingly, TEADs also have a central pocket that is distinct from the surface pockets, and which small molecules leverage exclusively to disrupt the YAP/TAZ-TEAD interaction (allosteric PPIDs). Although small molecules that occupy the central pocket belong to diverse classes, they display certain common features. They are flexible, which allows them to adopt a palmitate-like conformation, and they have a predominant hydrophobic portion that contacts several hydrophobic residues and a small hydrophilic portion that faces the central pocket opening. Despite such progress, more selective PPIDs that also display favorable pharmacokinetic properties and show tolerable toxicity profiles are required to evaluate the feasibility of using these PPIDs for cancer therapy.
鉴定能破坏 YAP/TAZ-TEAD 相互作用的蛋白-蛋白相互作用破坏剂(PPIDs)已经取得了相当大的进展。有几项研究表明,当 YAP/TAZ 与 TEAD 转录因子家族的相互作用被破坏时,它们不再具有致癌性。转录共调节剂 YAP(其同源物 TAZ)与 TEADs 的表面口袋相互作用。类似二硫键丰富肽和 YAP 环肽和线性肽的肽模拟物利用 TEADs 上的表面口袋(界面 2 和界面 3)并作为 PPIDs 发挥作用。TEAD 的表面可能对生成有效的小分子 PPID 构成挑战。有趣的是,TEADs 还有一个不同于表面口袋的中央口袋,小分子专门利用这个中央口袋来破坏 YAP/TAZ-TEAD 相互作用(别构 PPIDs)。尽管占据中央口袋的小分子属于不同的类别,但它们具有某些共同的特征。它们具有柔韧性,使其能够采用棕榈酸样构象,并且它们具有主要的疏水性部分,与几个疏水性残基接触,以及一个较小的亲水性部分,面向中央口袋开口。尽管取得了这些进展,但仍需要更具选择性的 PPIDs,这些 PPIDs 还具有良好的药代动力学特性和可耐受的毒性特征,以评估将这些 PPIDs 用于癌症治疗的可行性。