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Published on: November 9, 2020
Development of PROTACs for targeted degradation of oncogenic TRK fusions
Saurav Kumar1, Jiewei Jiang2, Mia S Donald-Paladino1
1Human Biology Division, Fred Hutchinson Cancer Center, Seattle, WA, 98109, USA.
Abstract:
Chromosomal translocations leading to the fusion of tropomyosin receptor kinases (TRK) with diverse partner proteins have been identified as oncogenic drivers in many adult and pediatric cancers. While first-generation TRK kinase inhibitors, such as entrectinib and larotrectinib, have shown positive responses in TRK fusion-positive cancers, resistance mutations against these inhibitors in the kinase domain limit their efficacy. Second-generation inhibitors are in clinical evaluation, highlighting a need for novel therapeutic modalities to achieve durable suppression of the oncogenic activity of TRK fusions. Here, we developed heterobifunctional small molecule degraders (PROTACs) to achieve targeted degradation of TRK fusions. By conjugating entrectinib to thalidomide, we identified JWJ-01-378 as a potent and selective CRBN-recruiting degrader of the TPM3-TRKA fusion. JWJ-01-378 induced TPM3-TRKA degradation through the ubiquitin-proteasome system and proteomics analysis confirmed the acute selectivity of JWJ-01-378 for achieving TPM3-TRKA degradation with minimal off-target effects. While JWJ-01-378 was also able to degrade wild-type TRK, it was unable to degrade TRK inhibitor resistant mutants and ALK fusions. Importantly, TPM3-TRKA degradation by JWJ-01-378 suppressed downstream signaling and reduced cancer cell viability, with improved responses compared to heterobifunctional control compounds that cannot degrade TPM3-TRKA. Together, our study expands the toolbox of compounds for evaluating targeted degradation of TRK fusions in cancer.
Insights
Researchers developed novel degraders (PROTACs) to target TRK fusions in cancer. The compound JWJ-01-378 effectively degraded TPM3-TRKA, suppressing cancer cell growth and offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Chromosomal translocations create oncogenic TRK fusions driving various cancers.
- Existing TRK inhibitors face resistance, necessitating new therapeutic approaches.
- Targeted protein degradation offers a promising strategy to overcome resistance.
Purpose of the Study:
- To develop novel heterobifunctional small molecule degraders (PROTACs) for TRK fusions.
- To evaluate the efficacy and selectivity of a novel TRK-targeting PROTAC, JWJ-01-378.
Main Methods:
- Design and synthesis of PROTACs by conjugating entrectinib to thalidomide.
- Assessment of JWJ-01-378's degradation of TPM3-TRKA via the ubiquitin-proteasome system.
- Proteomics analysis to confirm selectivity and evaluation of downstream signaling and cell viability.
Main Results:
- JWJ-01-378 effectively degraded the TPM3-TRKA fusion protein.
- Degradation was selective, with minimal off-target effects observed.
- JWJ-01-378 suppressed downstream signaling and reduced cancer cell viability.
Conclusions:
- TRK fusion degradation using PROTACs is a viable therapeutic strategy.
- JWJ-01-378 demonstrates potent and selective degradation of TPM3-TRKA.
- This approach expands therapeutic options for TRK fusion-driven cancers.
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