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Updated: Sep 11, 2025

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
FDA-approved kinase inhibitors in PROTAC design, development and synthesis
Kacper Kossakowski1,2, Alina Cherniienko1,2, Lucjusz Zaprutko1
1Department and Chair of Organic Chemistry, Poznan University of Medical Sciences, Poznan, Poland.
Abstract:
FDA-approved kinase inhibitors represent a rapidly growing class of targeted therapies with proven clinical success in oncology. However, their occupancy-driven mode of action is often associated with resistance, off-target effects, and incomplete inhibition. Proteolysis-Targeting Chimaeras (PROTACs) offer a compelling alternative by promoting complete degradation of oncogenic kinases, thereby enhancing selectivity and resistance reduction. In this review, we provide a comprehensive overview of the rational design, development, and synthetic approaches for PROTACs incorporating FDA-approved kinase inhibitors. We discuss key aspects influencing degrader efficiency, including kinase selectivity, linker design, E3 ligase recruitment, and synthetic strategies. Additionally, we highlight recent advances, emerging trends, and future directions, such as expanding the repertoire of degradable kinases, optimising linker chemistry, and broadening diversity of E3 ligases. A better understanding of these factors will facilitate the continued evolution of PROTAC technology into effective next-generation therapies for kinase-driven diseases.
Insights
Proteolysis-Targeting Chimaeras (PROTACs) offer a new approach to cancer therapy by degrading oncogenic kinases, overcoming resistance and off-target effects common with kinase inhibitors. This review explores PROTAC design and development for next-generation kinase-targeted treatments.
Area of Science:
- Oncology
- Medicinal Chemistry
- Molecular Biology
Background:
- FDA-approved kinase inhibitors are vital in oncology but face challenges like resistance and off-target effects.
- Proteolysis-Targeting Chimaeras (PROTACs) degrade target proteins, offering an alternative to traditional inhibitors.
Purpose of the Study:
- To provide a comprehensive overview of PROTACs designed using FDA-approved kinase inhibitors.
- To discuss rational design, development, and synthetic strategies for kinase-targeting PROTACs.
Main Methods:
- Review of rational design principles for PROTACs.
- Analysis of synthetic approaches for PROTAC development.
- Discussion of factors influencing degrader efficiency.
Main Results:
- PROTACs offer enhanced selectivity and resistance reduction compared to kinase inhibitors.
- Key factors for PROTAC efficiency include kinase selectivity, linker design, and E3 ligase recruitment.
Conclusions:
- PROTAC technology holds promise for next-generation therapies in kinase-driven diseases.
- Continued evolution of PROTACs requires optimizing linker chemistry and expanding E3 ligase diversity.
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