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Updated: Jul 20, 2025

Real-Time Monitoring of Aurora kinase A Activation using Conformational FRET Biosensors in Live Cells
Published on: July 30, 2020
Emerging roles of Aurora-A kinase in cancer therapy resistance
Dayong Zheng1, Jun Li2, Han Yan1
1School of Pharmacy, North China University of Science and Technology, Tangshan 063210, China.
Abstract:
Aurora kinase A (Aurora-A), a serine/threonine kinase, plays a pivotal role in various cellular processes, including mitotic entry, centrosome maturation and spindle formation. Overexpression or gene-amplification/mutation of Aurora-A kinase occurs in different types of cancer, including lung cancer, colorectal cancer, and breast cancer. Alteration of Aurora-A impacts multiple cancer hallmarks, especially, immortalization, energy metabolism, immune escape and cell death resistance which are involved in cancer progression and resistance. This review highlights the most recent advances in the oncogenic roles and related multiple cancer hallmarks of Aurora-A kinase-driving cancer therapy resistance, including chemoresistance (taxanes, cisplatin, cyclophosphamide), targeted therapy resistance (osimertinib, imatinib, sorafenib, etc.), endocrine therapy resistance (tamoxifen, fulvestrant) and radioresistance. Specifically, the mechanisms of Aurora-A kinase promote acquired resistance through modulating DNA damage repair, feedback activation bypass pathways, resistance to apoptosis, necroptosis and autophagy, metastasis, and stemness. Noticeably, our review also summarizes the promising synthetic lethality strategy for Aurora-A inhibitors in RB1, ARID1A and MYC gene mutation tumors, and potential synergistic strategy for mTOR, PAK1, MDM2, MEK inhibitors or PD-L1 antibodies combined with targeting Aurora-A kinase. In addition, we discuss the design and development of the novel class of Aurora-A inhibitors in precision medicine for cancer treatment.
Insights
Aurora kinase A (Aurora-A) drives cancer therapy resistance by impacting hallmarks like metabolism and immune escape. Targeting Aurora-A offers new strategies for overcoming resistance in various cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Aurora kinase A (Aurora-A) is crucial for cell division and is overexpressed in many cancers.
- Altered Aurora-A contributes to cancer progression and resistance to therapies.
- Understanding Aurora-A's role in cancer hallmarks is key for treatment strategies.
Purpose of the Study:
- To review recent advances in Aurora-A's oncogenic roles and its impact on cancer hallmarks.
- To highlight Aurora-A's contribution to resistance against various cancer therapies.
- To discuss novel therapeutic strategies targeting Aurora-A, including synthetic lethality and combination therapies.
Main Methods:
- Literature review of recent advances in Aurora-A kinase research.
- Analysis of Aurora-A's mechanisms in promoting cancer progression and therapy resistance.
- Summary of emerging therapeutic strategies involving Aurora-A inhibitors.
Main Results:
- Aurora-A overexpression/mutation drives cancer hallmarks like immortalization, metabolic reprogramming, immune escape, and apoptosis resistance.
- Aurora-A promotes resistance to chemotherapy, targeted therapy, endocrine therapy, and radiotherapy.
- Mechanisms include modulating DNA repair, bypassing feedback pathways, and promoting metastasis and stemness.
Conclusions:
- Aurora-A kinase is a significant driver of cancer therapy resistance across multiple hallmarks.
- Synthetic lethality and combination therapies targeting Aurora-A show promise for precision medicine.
- Novel Aurora-A inhibitors are under development for improved cancer treatment outcomes.
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