Publication | Open Access
Targeted perturbation of signaling-driven condensates
29
Citations
51
References
2023
Year
Tcf-derived PeptidesBiophysical ModelingMolecular RegulationMolecular BiologyCancer BiologyTumor BiologyTranscriptional RegulationSignaling PathwayCell RegulationCancer Cell BiologyMolecular CommunicationCell SignalingMolecular SignalingG Protein-coupled ReceptorCell BiologyBiomolecular CondensatesSignal TransductionShort PeptidesSignaling-driven CondensatesMedicineCell Development
Biomolecular condensates have emerged as a major organizational principle in the cell. However, the formation, maintenance, and dissolution of condensates are still poorly understood. Transcriptional machinery partitions into biomolecular condensates at key cell identity genes to activate these. Here, we report a specific perturbation of WNT-activated β-catenin condensates that disrupts oncogenic signaling. We use a live-cell condensate imaging method in human cancer cells to discover FOXO and TCF-derived peptides that specifically inhibit β-catenin condensate formation on DNA, perturb nuclear β-catenin condensates in cells, and inhibit β-catenin-driven transcriptional activation and colorectal cancer cell growth. We show that these peptides compete with homotypic intermolecular interactions that normally drive condensate formation. Using this framework, we derive short peptides that specifically perturb condensates and transcriptional activation of YAP and TAZ in the Hippo pathway. We propose a "monomer saturation" model in which short interacting peptides can be used to specifically inhibit condensate-associated transcription in disease.
| Year | Citations | |
|---|---|---|
Page 1
Page 1