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Updated: Jun 22, 2025

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Insights into the structural and functional activities of forgotten Kinases: PCTAIREs CDKs
Javad Karimbayli1, Ilenia Pellarin1, Barbara Belletti1
1Division of Molecular Oncology, Centro di Riferimento Oncologico (CRO) of Aviano, IRCCS, National Cancer Institute, Via Franco Gallini, Aviano, 33081, Italy.
Abstract:
In cells, signal transduction heavily relies on the intricate regulation of protein kinases, which provide the fundamental framework for modulating most signaling pathways. Dysregulation of kinase activity has been implicated in numerous pathological conditions, particularly in cancer. The druggable nature of most kinases positions them into a focal point during the process of drug development. However, a significant challenge persists, as the role and biological function of nearly one third of human kinases remains largely unknown.Within this diverse landscape, cyclin-dependent kinases (CDKs) emerge as an intriguing molecular subgroup. In human, this kinase family encompasses 21 members, involved in several key biological processes. Remarkably, 13 of these CDKs belong to the category of understudied kinases, and only 5 having undergone broad investigation to date. This knowledge gap underscores the pressing need to delve into the study of these kinases, starting with a comprehensive review of the less-explored ones.Here, we will focus on the PCTAIRE subfamily of CDKs, which includes CDK16, CDK17, and CDK18, arguably among the most understudied CDKs members. To contextualize PCTAIREs within the spectrum of human pathophysiology, we conducted an exhaustive review of the existing literature and examined available databases. This approach resulted in an articulate depiction of these PCTAIREs, encompassing their expression patterns, 3D configurations, mechanisms of activation, and potential functions in normal tissues and in cancer.We propose that this effort offers the possibility of identifying promising areas of future research that extend from basic research to potential clinical and therapeutic applications.
Insights
Protein kinases regulate cell signaling, but many are understudied. This review focuses on the PCTAIRE cyclin-dependent kinases (CDKs), exploring their functions in health and cancer to identify new research avenues.
Area of Science:
- Cellular signaling and molecular biology
- Cancer biology and drug development
- Kinase regulation and function
Background:
- Protein kinases are crucial for cell signal transduction, with dysregulation linked to cancer.
- A significant portion of human kinases, including many cyclin-dependent kinases (CDKs), remain understudied.
- Understanding understudied kinases is vital for advancing cancer research and therapeutic strategies.
Purpose of the Study:
- To comprehensively review the less-explored PCTAIRE subfamily of CDKs (CDK16, CDK17, CDK18).
- To elucidate the expression patterns, structures, activation mechanisms, and functions of PCTAIREs in normal and cancerous tissues.
- To identify potential areas for future research and therapeutic applications targeting these understudied kinases.
Main Methods:
- Exhaustive literature review of existing research on PCTAIRE CDKs.
- Analysis of available biological and pathway databases.
- Synthesis of information regarding expression, structure, activation, and function.
Main Results:
- Detailed characterization of CDK16, CDK17, and CDK18, highlighting their understudied nature.
- Compilation of current knowledge on PCTAIRE subfamily members' roles in normal physiology.
- Exploration of potential involvement of PCTAIREs in various cancer types.
Conclusions:
- The PCTAIRE CDK subfamily presents significant gaps in our understanding, necessitating further investigation.
- This review provides a foundation for future research into PCTAIREs' basic biology and pathological roles.
- Identifying novel functions of these kinases could lead to new diagnostic and therapeutic strategies in oncology.
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