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Published on: November 9, 2020
Discovery of a Proteolysis Targeting Chimera for TRKA and RET-derived oncoproteins
Marialuisa Moccia1, Lingzhi Zhang2, Zhengyu Wang3
1Istituto degli Endotipi in Oncologia, Metabolismo e Immunologia "G. Salvatore" (IEOMI) del CNR, Naples, Italia.
Abstract:
We designed Proteolysis Targeting Chimeras (PROTACs) to target Tropomyosin Receptor Kinase A (TRKA) and Rearranged during Transfection (RET) oncogenic proteins. We analyzed a series of 22 PROTACs, based on the RET and TRKA small molecule inhibitor Pz-1 and ligands of E3 ligase complex component Cereblon (CRBN). The compounds were tested in TPC-1 and KM12 cells, derived from papillary thyroid carcinoma and colorectal carcinoma, and harboring the CCDC6-RET and TPM3-TRKA oncoproteins, respectively. We identified several RET and TPM3-TRKA PROTACs, able to induce their degradation. Consistently, one of the most active degraders, compound 9, exhibited a strong anti-proliferative effect in several cancer cell lines derived from human medullary and papillary thyroid, lung and colon cancers, displaying either RET or TRKA-derived oncoproteins, with an IC50 dose of one digit nM. Mechanistically, TPM3-TRKA degradation by compound 9 was dependent on CRBN-mediated polyubiquitination and proteasomal degradation; accordingly, it was hindered by inhibitors of the proteasome (MG132) or Cullins (MLN4924), by dominant negative Cullin 4A mutant, and by free pomalidomide. Saturating amounts of compound 9 featured loss of activity, consistently with the bivalent binding of a PROTAC ("hook effect"). Finally, a compound 9 derivative, compound 20, induced in vivo degradation of TMP3-TRKA in KM12 cells mouse xenografts. In conclusion, our study indicated that PROTAC-mediated degradation is an efficient strategy to intercept RET and TRKA oncogenic signaling.
Insights
New Proteolysis Targeting Chimeras (PROTACs) effectively degrade oncogenic TRKA and RET proteins, showing potent anti-cancer effects in cell lines and mouse models. This highlights PROTACs as a promising strategy against RET and TRKA-driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Tropomyosin Receptor Kinase A (TRKA) and Rearranged during Transfection (RET) are key oncogenic proteins driving various cancers.
- Targeting these oncoproteins is crucial for developing effective cancer therapies.
Purpose of the Study:
- To design and evaluate Proteolysis Targeting Chimeras (PROTACs) for targeted degradation of TRKA and RET.
- To assess the anti-proliferative efficacy and degradation mechanisms of novel PROTAC compounds.
Main Methods:
- Developed 22 PROTACs utilizing a RET/TRKA inhibitor and a Cereblon (CRBN) E3 ligase ligand.
- Tested PROTACs in papillary thyroid (TPC-1) and colorectal (KM12) cancer cell lines.
- Investigated degradation pathways using proteasome and Cullin inhibitors, and analyzed in vivo efficacy in mouse xenografts.
Main Results:
- Identified several PROTACs capable of degrading RET and TPM3-TRKA oncoproteins.
- Compound 9 demonstrated potent anti-proliferative activity (low nM IC50) across various cancer cell lines.
- Degradation was confirmed to be CRBN-dependent, involving polyubiquitination and proteasomal pathways, with evidence of the 'hook effect'.
- Compound 20 induced in vivo TRKA degradation in a mouse xenograft model.
Conclusions:
- PROTAC-mediated degradation is a viable and effective strategy for targeting RET and TRKA oncogenic signaling.
- Novel PROTACs show significant therapeutic potential for cancers driven by RET and TRKA alterations.
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