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Chemical Inactivation of the E3 Ubiquitin Ligase Cereblon by Pomalidomide-based Homo-PROTACs
Published on: May 15, 2019
MYC-Targeting PROTACs Lead to Bimodal Degradation and N-Terminal Truncation
Shelton R Boyd1, Srinivas Chamakuri2, Alexander J Trostle3,4
1Verna and Marrs McLean Department of Biochemistry and Molecular Pharmacology, Baylor College of Medicine, One Baylor Plaza, Houston, Texas 77030, United States.
Abstract:
MYC is a master regulatory transcription factor whose sustained dysregulation promotes the initiation and maintenance of numerous cancers. While MYC is a regarded as a potenial therapeutic target in cancer, its intrinsically disordered structure has proven to be a formidable barrier toward the development of highly effective small molecule inhibitors. We rationalized that proteolysis targeting chimeras (PROTACs), which might accomplish the targeted degradation of MYC, would achieve more potent cell killing in MYC-driven cancer cells than reversible inhibitors. PROTACs are bifunctional small molecules designed to produce a ternary complex between a target protein and an E3 ligase leading the target's ubiquitination and degradation by the 26S proteasome. We generated PROTAC MTP3 based on modifications of the previously reported MYC-targeting compound KJ-Pyr-9. We found that MTP3 depletes endogenous full-length MYC proteins and uniquely induces increasing levels of a functional, N-terminally truncated MYC species, tMYC. Furthermore, MTP3 perturbs cellular MYC levels in favor of a tMYC-dominated state whose gene regulatory landscape is not significantly altered compared to that of wild type MYC. Moreover, although it lacks ∼10 kDa of MYC's N-terminal transactivation domain, tMYC is sufficient to maintain an oncogenic proliferative state. Our results highlight the complexities of proximity-inducing compounds against highly regulated and conformationally dynamic protein targets such as MYC and indicate that PROTACs can induce alternative outcomes beyond target protein degradation.
Insights
Proteolysis targeting chimeras (PROTACs) targeting MYC cancer protein show potential. PROTAC MTP3 depletes MYC and generates a truncated form, tMYC, which maintains cancer cell proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- MYC is a key transcription factor driving cancer development.
- Its disordered structure hinders traditional small molecule inhibitor development.
- Targeting MYC for degradation is a promising therapeutic strategy.
Purpose of the Study:
- To investigate the efficacy of PROTACs in degrading MYC.
- To evaluate if MYC degradation by PROTACs leads to enhanced cancer cell killing.
- To characterize the effects of a novel MYC-targeting PROTAC, MTP3.
Main Methods:
- Design and synthesis of PROTAC MTP3, a modified MYC-targeting compound.
- Assessment of MTP3's effect on endogenous MYC protein levels.
- Analysis of the functional and regulatory impact of MYC truncation induced by MTP3.
Main Results:
- MTP3 successfully depletes full-length MYC.
- MTP3 uniquely increases levels of a truncated MYC species (tMYC).
- tMYC maintains the oncogenic proliferative state despite lacking the N-terminal transactivation domain.
Conclusions:
- PROTACs can induce complex outcomes beyond simple target degradation.
- MYC-targeting PROTACs present unique challenges and possibilities in cancer therapy.
- The truncated MYC species, tMYC, plays a significant role in maintaining cancer progression.
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