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Targeting YAP/TAZ-TEAD protein-protein interactions using fragment-based and computational modeling approaches

机译:使用基于片段和计算建模方法靶向YAP / TAZ-TEAD蛋白质-蛋白质相互作用

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摘要

The Hippo signaling pathway, which is implicated in the regulation of organ size, has emerged as a potential target for the development of cancer therapeutics. YAP, TAZ (transcription co-activators) and TEAD (transcription factor) are the downstream transcriptional machinery and effectors of the pathway. Formation of the YAP/TAZ-TEAD complex leads to transcription of growth-promoting genes. Conversely, disrupting the interactions of the complex decreases cell proliferation. Herein, we screened a 1000-member fragment library using Thermal Shift Assay and identified a hit fragment. We confirmed its binding at the YAP/TAZ-TEAD interface by X-ray crystallography, and showed that it occupies the same hydrophobic pocket as a conserved phenylalanine of YAP/TAZ. This hit fragment serves as a scaffold for the development of compounds that have the potential to disrupt YAP/TAZ-TEAD interactions. Structure-activity relationship studies and computational modeling were also carried out to identify more potent compounds that may bind at this validated druggable binding site.
机译:Hippo信号通路与器官大小的调节有关,已成为开发癌症治疗药物的潜在靶标。 YAP,TAZ(转录共激活因子)和TEAD(转录因子)是该途径的下游转录机制和效应器。 YAP / TAZ-TEAD复合物的形成导致促进生长的基因转录。相反,破坏复合物的相互作用会降低细胞增殖。在本文中,我们使用热位移分析筛选了1000个成员的片段文库,并确定了一个命中片段。我们通过X射线晶体学证实了它在YAP / TAZ-TEAD界面上的结合,并显示它与YAP / TAZ的保守苯丙氨酸占据相同的疏水口袋。该命中片段用作开​​发可能破坏YAP / TAZ-TEAD相互作用的化合物的支架。还进行了结构-活性关系研究和计算模型,以鉴定可能在此经过验证的可药物结合位点结合的更有效的化合物。

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