Guarnaccia Alissa D, Hagenbeek Thijs J, Lee Wendy, Kljavin Noelyn, Choi Meena, Tombling Benjamin, Peukert Carsten, Ulas Gözde, Kameswaran Vasumathi, Le Daniel, Paul Sayantanee, Vaidya Samir, Zbieg Jason R, Crawford James J, Daniel Bence, Dey Anwesha, Lill Jennie R
Department of Proteomic and Genomic Technologies, Genentech, South San Francisco, CA 94080.
Department of Discovery Oncology, Genentech, South San Francisco, CA 94080.
Proc Natl Acad Sci U S A. 2025 Jul 8;122(27):e2425984122. doi: 10.1073/pnas.2425984122. Epub 2025 Jul 3.
TEAD proteins are the main transcriptional effectors of the Hippo signaling pathway and a clinical-stage pharmacological target in oncology. Most TEAD-targeting small molecules are designed to disrupt interaction between TEAD and the oncogenic transcriptional activators YAP and TAZ. Here, we uncover an alternative mechanism for a subset of TEAD lipid pocket-binding molecules. We report that select sulfonamide-containing TEAD-targeting compounds enhance the interaction between TEAD and the transcriptional repressor VGLL4. Chemically induced VGLL4-TEAD complexes confer an antiproliferative effect by outcompeting YAP-TEAD complexes at chromatin. This cofactor switch from YAP to VGLL4 impacts transcriptional networks, including influencing the expression of genes involved in cellular proliferation and mechanosignaling. We demonstrate that VGLL4 is required for an antiproliferative response to these sulfonamide-containing compounds by counteracting YAP. We show that VGLL4 overexpression can confer sensitivity to these compounds in Hippo-driven cell lines, and we further show that genetic deletion of VGLL4 oblates cellular responsiveness to these molecules in cells and in vivo. Our data reveal a category of TEAD inhibitors that act as "molecular glues" toward the repressive VGLL4-TEAD interaction. These findings open up understandings for curbing the oncogenic activity of Hippo pathway deregulation in cancer, and identify glue-like molecules that promote transcriptional repression.
TEAD蛋白是Hippo信号通路的主要转录效应因子,也是肿瘤学中处于临床阶段的药理学靶点。大多数靶向TEAD的小分子旨在破坏TEAD与致癌转录激活因子YAP和TAZ之间的相互作用。在此,我们揭示了一部分TEAD脂质口袋结合分子的另一种作用机制。我们报告称,某些含磺胺的靶向TEAD的化合物增强了TEAD与转录抑制因子VGLL4之间的相互作用。化学诱导的VGLL4-TEAD复合物通过在染色质上竞争YAP-TEAD复合物而发挥抗增殖作用。这种从YAP到VGLL4的辅因子转换影响转录网络,包括影响参与细胞增殖和机械信号传导的基因的表达。我们证明,通过拮抗YAP,VGLL4是对这些含磺胺化合物产生抗增殖反应所必需的。我们表明,VGLL4过表达可使Hippo驱动的细胞系对这些化合物敏感,并且我们进一步表明,在细胞和体内,VGLL4的基因缺失消除了细胞对这些分子的反应性。我们的数据揭示了一类TEAD抑制剂,它们对抑制性的VGLL4-TEAD相互作用起到“分子胶水”的作用。这些发现为抑制癌症中Hippo通路失调的致癌活性提供了新的认识,并鉴定出促进转录抑制的类胶水分子。