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Updated: Aug 10, 2025

High-Throughput Cellular Profiling of Targeted Protein Degradation Compounds Using HiBiT CRISPR Cell Lines
Published on: November 9, 2020
Protein degraders enter the clinic - a new approach to cancer therapy
Deborah Chirnomas1, Keith R Hornberger2, Craig M Crews3,4,5
1Arvinas Operations, Inc., New Haven, CT, USA. debbie.chirnomas@arvinas.com.
Abstract:
Heterobifunctional protein degraders, such as PROteolysis TArgeting Chimera (PROTAC) protein degraders, constitute a novel therapeutic modality that harnesses the cell's natural protein-degradation machinery - that is, the ubiquitin-proteasome system - to selectively target proteins involved in disease pathogenesis for elimination. Protein degraders have several potential advantages over small-molecule inhibitors that have traditionally been used for cancer treatment, including their event-driven (rather than occupancy-driven) pharmacology, which permits sub-stoichiometric drug concentrations for activity, their capacity to act iteratively and target multiple copies of a protein of interest, and their potential to target nonenzymatic proteins that were previously considered 'undruggable'. Following numerous innovations in protein degrader design and rigorous evaluation in preclinical models, protein degraders entered clinical testing in 2019. Currently, 18 protein degraders are in phase I or phase I/II clinical trials that involve patients with various tumour types, with a phase III trial of one initiated in 2022. The first safety, efficacy and pharmacokinetic data from these studies are now materializing and, although considerably more evidence is needed, protein degraders are showing promising activity as cancer therapies. Herein, we review advances in protein degrader development, the preclinical research that supported their entry into clinical studies, the available data for protein degraders in patients and future directions for this new class of drugs.
Insights
Novel protein degraders, like PROteolysis TArgeting Chimera (PROTAC) molecules, offer advantages over traditional cancer drugs by utilizing the body's natural systems. Early clinical trials show promising cancer treatment activity for these innovative therapeutics.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Protein degraders, including PROteolysis TArgeting Chimera (PROTAC) molecules, represent a new therapeutic strategy.
- They leverage the ubiquitin-proteasome system for targeted protein elimination in disease.
- These agents offer potential advantages over traditional small-molecule inhibitors.
Purpose of the Study:
- To review advancements in protein degrader development.
- To summarize preclinical research supporting their clinical application.
- To present current clinical data and future directions for protein degraders in cancer therapy.
Main Methods:
- Review of scientific literature on protein degrader design and preclinical evaluation.
- Analysis of clinical trial data (Phase I, I/II, and III) for protein degraders in cancer patients.
- Synthesis of safety, efficacy, and pharmacokinetic data from ongoing studies.
Main Results:
- Protein degraders demonstrate event-driven pharmacology, enabling sub-stoichiometric concentrations for efficacy.
- They can iteratively target multiple protein copies and address previously undruggable proteins.
- Early clinical data from 18 agents in trials indicate promising anti-cancer activity, with one agent in Phase III trials.
Conclusions:
- Protein degraders are a rapidly advancing therapeutic modality with significant potential in oncology.
- Ongoing clinical trials are generating crucial data on their safety and efficacy.
- Further research and clinical evaluation are essential to establish their role in cancer treatment.
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