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Updated: Aug 2, 2025

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Cyclin-dependent kinases in cancer: Role, regulation, and therapeutic targeting
Ashna Gupta1, Gunjan Dagar1, Ravi Chauhan1
1Department of Medical Oncology, Dr B.R Ambedkar Institute Rotary Cancer Hospital All India Institute of Medical Sciences, New Delhi, India.
Abstract:
Regulated cell division is one of the fundamental phenomena which is the basis of all life on earth. Even a single base pair mutation in DNA leads to the production of the dysregulated protein that can have catastrophic consequences. Cell division is tightly controlled and orchestrated by proteins called cyclins and cyclin-dependent kinase (CDKs), which serve as licensing factors during different phases of cell division. Dysregulated cell division is one of the most important hallmarks of cancer and is commonly associated with a mutation in cyclins and CDKs along with tumor suppressor proteins. Therefore, targeting the component of the cell cycle which leads to these characteristics would be an effective strategy for treating cancers. Specifically, Cyclin-dependent kinases (CDKs) involved in cell cycle regulation have been identified to be overexpressed in many cancers. Many studies indicate that oncogenesis occurs in cancerous cells by the overactivity of different CDKs, which impact cell cycle progression and checkpoint dysregulation which is responsible for development of tumor. The development of CDK inhibitors has emerged as a promising and novel approach for cancer treatment in both solid and hematological malignancies. Some of the novel CDK inhibitors have shown remarkable results in clinical trials, such as-Ribociclib®, Palbociclib® and Abemaciclib®, which are CDK4/6 inhibitors and have received FDA approval for the treatment of breast cancer. In this chapter, we discuss the molecular mechanism through which cyclins and CDKs regulate cell cycle progression and the emergence of cyclins and CDKs as rational targets in cancer. We also discuss recent advances in developing CDK inhibitors, which have emerged as a novel class of inhibitors, and their associated toxicities in recent years.
Insights
Regulated cell division is crucial for life, but its dysregulation drives cancer. Targeting cell cycle regulators like cyclin-dependent kinases (CDKs) offers a promising cancer treatment strategy.
Area of Science:
- Molecular Biology
- Cancer Biology
- Pharmacology
Background:
- Cell division is fundamental to life, tightly regulated by cyclins and cyclin-dependent kinases (CDKs).
- Dysregulated cell division, often due to mutations in cell cycle proteins, is a hallmark of cancer.
- Overexpression and overactivity of CDKs contribute to oncogenesis by disrupting cell cycle progression and checkpoints.
Purpose of the Study:
- To elucidate the molecular mechanisms of cyclin and CDK regulation in cell cycle progression.
- To highlight cyclins and CDKs as rational therapeutic targets in cancer treatment.
- To review recent advancements in the development of CDK inhibitors for cancer therapy.
Main Methods:
- Review of molecular mechanisms governing cell cycle regulation by cyclins and CDKs.
- Analysis of the role of CDK dysregulation in oncogenesis.
- Compilation of data on novel CDK inhibitors and their clinical trial outcomes.
Main Results:
- Cyclins and CDKs are critical regulators of cell cycle progression.
- CDK overactivity is implicated in cancer development and progression.
- Novel CDK inhibitors, including FDA-approved CDK4/6 inhibitors (Ribociclib, Palbociclib, Abemaciclib), show efficacy in clinical trials for various cancers.
Conclusions:
- Targeting cell cycle components, particularly CDKs, is a viable and effective strategy for cancer treatment.
- CDK inhibitors represent a promising class of novel anti-cancer therapeutics.
- Ongoing research focuses on developing new CDK inhibitors while managing associated toxicities.
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