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Updated: Aug 28, 2025

Tuning Degradation to Achieve Specific and Efficient Protein Depletion
Published on: July 20, 2019
OligoTRAFTACs: A generalizable method for transcription factor degradation
Kusal T G Samarasinghe1, Elvira An2, Miriam A Genuth1
1Department of Molecular, Cellular & Developmental Biology, Yale University New Haven CT 06511 USA craig.crews@yale.edu.
We developed oligoTRAFTACs, a novel platform to degrade disease-driving transcription factors (TFs) that are typically undruggable. This technology successfully degraded oncogenic TFs like c-Myc and brachyury in cells and in vivo.
Area of Science:
- Molecular Biology
- Drug Discovery
- Genetics
Background:
- Dysregulated transcription factors (TFs) are key drivers of disease but are often undruggable due to lack of ligandable pockets.
- Current therapeutic strategies struggle to target many oncogenic TFs effectively.
- Transcription factor targeting chimeras (TRAFTACs) offer a potential solution by hijacking cellular degradation machinery.
Purpose of the Study:
- To develop a second-generation TRAFTAC platform, termed oligoTRAFTACs, for targeted proteasomal degradation of transcription factors.
- To demonstrate the efficacy of oligoTRAFTACs against oncogenic transcription factors c-Myc and brachyury.
- To validate the in vitro and in vivo activity of oligoTRAFTACs.
Main Methods:
- Design and synthesis of oligoTRAFTACs, comprising a TF-binding oligonucleotide and an E3 ligase-recruiting ligand.
- Assessment of TF degradation in cancer cell lines, including chordoma models.
- In vivo validation of oligoTRAFTAC activity using zebrafish models.
Main Results:
- Successful development of oligoTRAFTACs, a second-generation TRAFTAC technology.
- Demonstrated degradation of oncogenic transcription factors c-Myc and brachyury by oligoTRAFTACs.
- Confirmed oligoTRAFTAC efficacy in chordoma cell lines and in vivo in zebrafish.
Conclusions:
- OligoTRAFTACs represent a versatile and generalizable platform for targeting previously undruggable transcription factors.
- This approach enables the degradation of oncogenic TFs via the proteasomal pathway.
- OligoTRAFTACs hold promise for developing new therapeutics against diseases driven by transcription factor dysregulation.
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