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Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Non-mitotic functions of polo-like kinases in cancer cells
Christopher A Raab1, Monika Raab1, Sven Becker1
1Department of Gynecology, Goethe-University, Frankfurt, Germany.
Abstract:
Inhibitors of mitotic protein kinases are currently being developed as non-neurotoxic alternatives of microtubule-targeting agents (taxanes, vinca alkaloids) which provide a substantial survival benefit for patients afflicted with different types of solid tumors. Among the mitotic kinases, the cyclin-dependent kinases, the Aurora kinases, the kinesin spindle protein and Polo-like kinases (PLKs) have emerged as attractive targets of cancer therapeutics. The functions of mammalian PLK1-5 are traditionally linked to the regulation of the cell cycle and to the stress response. Especially the key role of PLK1 and PLK4 in cellular growth and proliferation, their overexpression in multiple types of human cancer and their druggability, make them appealing targets for cancer therapy. Inhibitors for PLK1 and PLK4 are currently being tested in multiple cancer trials. The clinical success of microtubule-targeting agents is attributed not solely to the induction of a mitotic arrest in cancer cells, but also to non-mitotic effects like targeting intracellular trafficking on microtubules. This raises the question whether new cancer targets like PLK1 and PLK4 regulate critical non-mitotic functions in tumor cells. In this article we summarize the important roles of PLK1-5 for the regulation of non-mitotic signaling. Due to these functions it is conceivable that inhibitors for PLK1 or PLK4 can target interphase cells, which underscores their attractive potential as cancer drug targets. Moreover, we also describe the contribution of the tumor-suppressors PLK2, PLK3 and PLK5 to cancer cell signaling outside of mitosis. These observations highlight the urgent need to develop highly specific ATP-competitive inhibitors for PLK4 and for PLK1 like the 3rd generation PLK-inhibitor Onvansertib to prevent the inhibition of tumor-suppressor PLKs in- and outside of mitosis. The remarkable feature of PLKs to encompass a unique druggable domain, the polo-box-domain (PBD) that can be found only in PLKs offers the opportunity for the development of inhibitors that target PLKs exclusively. Beyond the development of mono-specific ATP-competitive PLK inhibitors, the PBD as drug target will support the design of new drugs that eradicate cancer cells based on the mitotic and non-mitotic function of PLK1 and PLK4.
Insights
New Polo-like kinase (PLK) inhibitors offer non-neurotoxic cancer treatments. Targeting PLK1 and PLK4, crucial for cell growth, may impact non-mitotic functions, enhancing cancer therapy potential.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Mitotic protein kinase inhibitors are developed as alternatives to traditional microtubule-targeting agents.
- Polo-like kinases (PLKs), particularly PLK1 and PLK4, are key regulators of cell cycle, proliferation, and are overexpressed in various cancers.
- Understanding PLK functions beyond mitosis is crucial for developing novel cancer therapeutics.
Purpose of the Study:
- To review the non-mitotic roles of Polo-like kinases (PLK1-5) in cancer cell signaling.
- To evaluate the potential of PLK1 and PLK4 inhibitors as cancer therapeutics targeting both mitotic and non-mitotic functions.
- To highlight the need for specific inhibitors that distinguish between oncogenic and tumor-suppressor PLKs.
Main Methods:
- Literature review of studies on Polo-like kinases (PLK1-5) and their roles in cell cycle regulation and cancer.
- Analysis of the non-mitotic functions of PLKs in tumor cells.
- Discussion of the druggability of PLKs, including the polo-box domain (PBD).
Main Results:
- PLK1 and PLK4 play significant roles in cellular growth and proliferation, with overexpression linked to cancer.
- PLKs regulate critical non-mitotic functions in tumor cells, suggesting inhibitors can target interphase cells.
- PLK2, PLK3, and PLK5 act as tumor suppressors, necessitating specific inhibitor development to avoid off-target effects.
Conclusions:
- PLK1 and PLK4 are promising targets for cancer therapy due to their roles in both mitotic and non-mitotic processes.
- Development of highly specific ATP-competitive inhibitors, like third-generation PLK inhibitor Onvansertib, is essential to target PLK1/PLK4 while sparing tumor-suppressor PLKs.
- The unique polo-box domain (PBD) of PLKs offers a target for developing exclusive PLK inhibitors for comprehensive cancer eradication.
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