MYF-03-176
目录号 : GC68007MYF-03-176 是一种口服有效的的抗癌剂 (anticancer agent)。 MYF-03-176 通过口服对 MPM 小鼠异种移植瘤模型显示出较强的抗肿瘤作用。
Sample solution is provided at 25 µL, 10mM.
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MYF-03-176 is an orally active and potent anticancer agent. MYF-03-176 shows strong antitumor efficacy in MPM mouse xenograft model via oral administration[1].
[1]. Mengyang Fan, et al. Covalent Disruptor of YAP-TEAD Association Suppresses Defective Hippo Signaling. BioRxiv.
Cas No. | SDF | Download SDF | |
分子式 | C19H18F4N4O2 | 分子量 | 410.37 |
溶解度 | 储存条件 | Store at -20°C | |
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1 mg | 5 mg | 10 mg | |
1 mM | 2.4368 mL | 12.1841 mL | 24.3683 mL |
5 mM | 0.4874 mL | 2.4368 mL | 4.8737 mL |
10 mM | 0.2437 mL | 1.2184 mL | 2.4368 mL |
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Structure-Based Design of Y-Shaped Covalent TEAD Inhibitors
J Med Chem 2023 Apr 13;66(7):4617-4632.PMID:36946421DOI:10.1021/acs.jmedchem.2c01548.
Transcriptional enhanced associate domain (TEAD) proteins together with their transcriptional coactivator yes-associated protein (YAP) and transcriptional coactivator with the PDZ-binding motif (TAZ) are important transcription factors and cofactors that regulate gene expression in the Hippo pathway. In mammals, the TEAD families have four homologues: TEAD1 (TEF-1), TEAD2 (TEF-4), TEAD3 (TEF-5), and TEAD4 (TEF-3). Aberrant expression and hyperactivation of TEAD/YAP signaling have been implicated in a variety of malignancies. Recently, TEADs were recognized as being palmitoylated in cells, and the lipophilic palmitate pocket has been successfully targeted by both covalent and noncovalent ligands. In this report, we present the medicinal chemistry effort to develop MYF-03-176 (compound 22) as a selective, cysteine-covalent TEAD inhibitor. MYF-03-176 (compound 22) significantly inhibits TEAD-regulated gene expression and proliferation of the cell lines with TEAD dependence including those derived from mesothelioma and liposarcoma.
Covalent disruptor of YAP-TEAD association suppresses defective Hippo signaling
Elife 2022 Oct 27;11:e78810.PMID:36300789DOI:10.7554/eLife.78810.
The transcription factor TEAD, together with its coactivator YAP/TAZ, is a key transcriptional modulator of the Hippo pathway. Activation of TEAD transcription by YAP has been implicated in a number of malignancies, and this complex represents a promising target for drug discovery. However, both YAP and its extensive binding interfaces to TEAD have been difficult to address using small molecules, mainly due to a lack of druggable pockets. TEAD is post-translationally modified by palmitoylation that targets a conserved cysteine at a central pocket, which provides an opportunity to develop cysteine-directed covalent small molecules for TEAD inhibition. Here, we employed covalent fragment screening approach followed by structure-based design to develop an irreversible TEAD inhibitor MYF-03-69. Using a range of in vitro and cell-based assays we demonstrated that through a covalent binding with TEAD palmitate pocket, MYF-03-69 disrupts YAP-TEAD association, suppresses TEAD transcriptional activity and inhibits cell growth of Hippo signaling defective malignant pleural mesothelioma (MPM). Further, a cell viability screening with a panel of 903 cancer cell lines indicated a high correlation between TEAD-YAP dependency and the sensitivity to MYF-03-69. Transcription profiling identified the upregulation of proapoptotic BMF gene in cancer cells that are sensitive to TEAD inhibition. Further optimization of MYF-03-69 led to an in vivo compatible compound MYF-03-176, which shows strong antitumor efficacy in MPM mouse xenograft model via oral administration. Taken together, we disclosed a story of the development of covalent TEAD inhibitors and its high therapeutic potential for clinic treatment for the cancers that are driven by TEAD-YAP alteration.