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Updated: May 28, 2025

Real-Time Monitoring of Aurora kinase A Activation using Conformational FRET Biosensors in Live Cells
Published on: July 30, 2020
De-regulation of aurora kinases by oncogenic HPV; implications in cancer development and treatment
Kemi Hannah Oladipo1, Joanna L Parish1
1Department of Cancer and Genomic Sciences, College of Medicine and Health, University of Birmingham, Birmingham, United Kingdom; National Institute for Health and Care Research (NIHR) Birmingham Biomedical Research Centre, Birmingham, United Kingdom.
Abstract:
Human papillomaviruses (HPVs) cause diseases ranging from benign warts to invasive cancers. HPVs are the cause of almost all cervical cancers and a sub-set of other epithelial malignancies including head and neck cancers, specifically within the oropharynx. The oncogenic properties of HPV are largely mediated through the viral oncoproteins E6 and E7, which disrupt many cellular pathways to drive uncontrolled cell proliferation. One family of proteins targeted by HPV is the Aurora kinase family. Aurora kinases are serine/threonine kinases including Aurora kinase A (AURKA), B (AURKB), and C (AURKC) which are often dysregulated in many cancer types, including HPV driven cancers. All three family members play essential roles in mitotic regulation and accurate cell division. The deregulation of Aurora kinases by HPV infection highlights their potential as therapeutic targets in HPV-associated malignancies. Targeting Aurora kinase activity, in combination with current HPV therapies, may provide new avenues for treating HPV-induced cancers and reducing the burden of HPV-related diseases. Combinatorial inhibition targets distinct but overlapping functions of these kinases, thereby reducing the potential for cancer cells to develop resistance. This broad impact emphasizes the capability for Aurora kinase inhibitors not only as anti-mitotic agents but also as modulators of multiple oncogenic pathways. This review explores the combinatorial effects of Aurora kinase inhibition, offering insights into novel therapeutic strategies for the treatment of HPV-driven cancers.
Insights
Human papillomaviruses (HPVs) drive cancer by disrupting cell division via Aurora kinases. Inhibiting these kinases offers a promising therapeutic strategy for HPV-associated malignancies.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Human papillomaviruses (HPVs) are linked to various cancers, including cervical and oropharyngeal malignancies.
- Viral oncoproteins E6 and E7 from HPVs disrupt cellular pathways, promoting uncontrolled cell proliferation.
- The Aurora kinase family (AURKA, AURKB, AURKC) is frequently dysregulated in cancers, including those driven by HPV.
Purpose of the Study:
- To explore the role of Aurora kinases in HPV-driven cancers.
- To review the therapeutic potential of targeting Aurora kinases in HPV-associated malignancies.
- To examine the benefits of combinatorial inhibition of Aurora kinases for cancer treatment.
Main Methods:
- Review of scientific literature on HPV, Aurora kinases, and cancer therapeutics.
- Analysis of the mechanisms by which HPV affects Aurora kinase function.
- Exploration of combinatorial inhibition strategies for Aurora kinase inhibitors.
Main Results:
- HPV infection dysregulates Aurora kinases, which are crucial for mitotic regulation.
- Aurora kinase inhibitors show potential as anti-mitotic agents and modulators of oncogenic pathways.
- Combinatorial inhibition of Aurora kinases may overcome cancer resistance mechanisms.
Conclusions:
- Targeting Aurora kinases presents a promising therapeutic avenue for HPV-driven cancers.
- Combination therapies involving Aurora kinase inhibitors could enhance treatment efficacy and reduce disease burden.
- Further research into combinatorial Aurora kinase inhibition is warranted for novel HPV cancer treatments.
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