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Published on: November 9, 2020
Annual review of PROTAC degraders as anticancer agents in 2022
Xiao Wang1, Zhao-Long Qin2, Na Li2
1School of Basic Medical Sciences, Zhengzhou University, Zhengzhou, 450001, China.
Abstract:
Following nearly two decades of development, significant advancements have been achieved in PROTAC technology. As of the end of 2022, more than 20 drugs have entered clinical trials, with ARV-471 targeting estrogen receptor (ER) showing remarkable progress by entering phase III clinical studies. In 2022, significant progress has been made on multiple targets. The first reversible covalent degrader designed to target the KRASG12C mutant protein, based on cyclopropionamide, has been reported. Additionally, the activity HDCA1 degrader surpassed submicromolar levels during the same year. A novel FEM1B covalent ligand called EN106 was also discovered, expanding the range of available ligands. Furthermore, the first PROTAC drug targeting SOS1 was reported. Additionally, the first-in-class degraders that specifically target BRD4 isoforms (BRD4 L and BRD4 S) have recently been reported, providing a valuable tool for further investigating the biological functions of these isoforms. Lastly, a breakthrough was also achieved with the first degrader targeting both CDK9 and Cyclin T1. In this review, we aimed to update the PROTAC degraders as potential anticancer agents covering articles published in 2022. The design strategies, degradation effects, and anticancer activities were highlighted, which might provide an updated sight to develop novel PROTAC degraders with great potential as anticancer agents as well as favorable drug-like properties.
Insights
Proteolysis-targeting chimera (PROTAC) technology shows significant advancements, with over 20 drugs in clinical trials by 2022. New PROTACs targeting KRASG12C, BRD4, and other key proteins demonstrate promise as novel anticancer agents.
Area of Science:
- Biochemistry
- Medicinal Chemistry
- Oncology
Background:
- Proteolysis-targeting chimera (PROTAC) technology has advanced significantly over two decades.
- By the end of 2022, over 20 PROTAC drugs entered clinical trials, with ARV-471 (ER-targeting) in Phase III.
Purpose of the Study:
- To review and update the status of PROTAC degraders as potential anticancer agents based on 2022 publications.
- To highlight design strategies, degradation effects, and anticancer activities of novel PROTACs.
Main Methods:
- Literature review of scientific articles published in 2022 focusing on PROTAC technology and its anticancer applications.
- Analysis of design strategies, degradation efficacy, and preclinical/clinical outcomes of PROTAC degraders.
Main Results:
- Development of the first reversible covalent degrader for KRASG12C.
- Achieved submicromolar activity for HDCA1 degraders and discovered a novel FEM1B ligand (EN106).
- Reported the first PROTACs targeting SOS1, BRD4 isoforms (BRD4 L/S), and a dual degrader for CDK9/Cyclin T1.
Conclusions:
- PROTAC technology continues to yield promising anticancer drug candidates with diverse target specificities.
- Recent advancements in 2022 offer new strategies and tools for developing effective PROTAC-based cancer therapies with improved drug-like properties.
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