Targeting cyclin-dependent kinases in human cancers: from small molecules to Peptide inhibitors
Marion Peyressatre1, Camille Prével2, Morgan Pellerano1
1Institut des Biomolécules Max Mousseron, IBMM-CNRS-UMR5247, 15 Av. Charles Flahault, 34093 Montpellier, France. marion.peyressatre@univ-montp1.fr.
Abstract:
Cyclin-dependent kinases (CDK/Cyclins) form a family of heterodimeric kinases that play central roles in regulation of cell cycle progression, transcription and other major biological processes including neuronal differentiation and metabolism. Constitutive or deregulated hyperactivity of these kinases due to amplification, overexpression or mutation of cyclins or CDK, contributes to proliferation of cancer cells, and aberrant activity of these kinases has been reported in a wide variety of human cancers. These kinases therefore constitute biomarkers of proliferation and attractive pharmacological targets for development of anticancer therapeutics. The structural features of several of these kinases have been elucidated and their molecular mechanisms of regulation characterized in depth, providing clues for development of drugs and inhibitors to disrupt their function. However, like most other kinases, they constitute a challenging class of therapeutic targets due to their highly conserved structural features and ATP-binding pocket. Notwithstanding, several classes of inhibitors have been discovered from natural sources, and small molecule derivatives have been synthesized through rational, structure-guided approaches or identified in high throughput screens. The larger part of these inhibitors target ATP pockets, but a growing number of peptides targeting protein/protein interfaces are being proposed, and a small number of compounds targeting allosteric sites have been reported.
Insights
Cyclin-dependent kinases (CDK/Cyclins) are crucial for cell cycle and cancer. Inhibitors targeting these kinases offer potential anticancer therapeutics, despite challenges in drug development.
Area of Science:
- Biochemistry and Molecular Biology
- Cell Biology
- Cancer Biology
Background:
- Cyclin-dependent kinases (CDK/Cyclins) are key regulators of cell cycle, transcription, neuronal differentiation, and metabolism.
- Aberrant CDK/Cyclin activity, due to mutations or overexpression, drives cancer cell proliferation and is implicated in various human cancers.
- These kinases are recognized as proliferation biomarkers and promising targets for anticancer drug development.
Purpose of the Study:
- To review the role of CDK/Cyclins in biological processes and cancer.
- To discuss the challenges and strategies in developing CDK/Cyclin inhibitors as anticancer therapeutics.
- To highlight different classes of inhibitors targeting CDK/Cyclins.
Main Methods:
- Literature review of CDK/Cyclin function, regulation, and inhibition.
- Analysis of structural and mechanistic studies of CDK/Cyclins.
- Survey of identified and synthesized CDK/Cyclin inhibitors.
Main Results:
- CDK/Cyclins are implicated in cell cycle control and cancer development.
- Developing inhibitors is challenging due to conserved kinase structures and ATP-binding pockets.
- Inhibitors include ATP-pocket binders, protein-protein interface targeting peptides, and allosteric modulators.
Conclusions:
- CDK/Cyclins are vital targets for cancer therapy.
- Diverse inhibitor strategies are being explored, including ATP-competitive, interface-targeting, and allosteric inhibitors.
- Continued research into CDK/Cyclin inhibitors holds promise for novel anticancer treatments.
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