Targeting the Hippo pathway in cancers via ubiquitination dependent TEAD degradation
Pham, T. H.; Pahuja, K. B.; Hagenbeek, T. J.; Zbieg, J.; Noland, C. L.; Pham, V. C.; Yao, X.; Rose, C. M.; Browder, K. C.; Lee, H.-J.; Yu, M.; Liang-Chu, M.; Martin, S. E.; Verschueren, E.; Li, J.; Kubala, M. H.; Fong, R.; Lorenzo, M.; Beroza, P.; Hsu, P.; Paul, S.; Villemure, E.; Lee, W.; Cheung, T.; Clausen, S.; Lacap, J.; Liang, Y.; Cheng, J.; Schmidt, S.; Modrusan, Z.; Cohen, M. S.; Crawford, J.; Jasper, H.; Ashworth, A.; Lill, J. R.; Malek, S.; Rudolph, J.; Wertz, I. E.; Chang, M.; Ye, X.; Dey, A.
Show abstract
The Hippo pathway is among the most frequently altered key signaling pathways in cancer. TEAD1-4 are essential transcription factors and key downstream effectors in the Hippo pathway in human cells. Here, we identified RNF146 as a ubiquitin ligase (E3) of TEADs, which negatively regulates their stability in cells through proteasome-mediated degradation. We show that RNF146-mediated TEAD ubiquitination is dependent on the TEAD PARylation state. We further validated the genetic interaction between RNF146 and the Hippo pathway in cancer cell lines and the model organism Drosophila melanogaster. Despite the RNF146 and proteasome-mediated degradation mechanisms, TEADs are stable proteins with a long half-life in cells. We demonstrate that degradation of TEADs can be greatly enhanced pharmacologically with heterobifunctional chemical inducers of protein degradation (CIDEs). These TEAD-CIDEs can effectively suppress activation of YAP/TAZ target genes in a dose-dependent manner and exhibit significant anti-proliferative effects in YAP/TAZ-dependent tumor cells, thus phenocopying the effect of genetic ablation of TEAD protein. Collectively, this study demonstrates that the ubiquitin-proteasome system plays an important role in regulating TEAD functions and provides a proof-of-concept demonstration that pharmacologically induced TEAD ubiquitination could be leveraged to target YAP/TAZ-driven cancers.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Prolonging lung cancer response to EGFR inhibition by targeting the selective advantage of resistant cells 95%
- Enhancer Remodeling Promotes Tumor-Initiating Activity in NRF2-Activated Non-Small Cell Lung Cancers 95%
- Bone morphogenetic protein (BMP) signaling determines neuroblastoma cell fate and sensitivity to retinoic acid. 95%
Similar papers in this journal
- A conserved SUMO-Ubiquitin pathway directed by RNF4/SLX5-SLX8 and PIAS4/SIZ1 drives proteasomal degradation of topoisomerase DNA-protein crosslinks 95%
- The G1/S transition is promoted by Rb degradation via the E3 ligase UBR5 95%
- Selective targeting of TBXT with DARPins identifies regulatory networks and therapeutic vulnerabilities in chordoma 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.