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Published on: July 21, 2018
Aurora kinase targeting in lung cancer reduces KRAS-induced transformation
Edmilson Ozorio Dos Santos1, Tatiana Correa Carneiro-Lobo2, Mateus Nobrega Aoki3
1Department of Biochemistry, Chemistry Institute, University of São Paulo, São Paulo, SP, Brazil. edmilson.ozorio@usp.br.
Background:
Activating mutations in KRAS are prevalent in lung cancer and have been causally linked to the oncogenic process. However, therapies targeted to oncogenic RAS have been ineffective to date and identification of KRAS targets that impinge on the oncogenic phenotype is warranted. Based on published studies showing that mitotic kinases Aurora A (AURKA) and B (AURKB) cooperate with oncogenic RAS to promote malignant transformation and that AURKA phosphorylates RAS effector pathway components, the aim of this study was to investigate whether AURKA and AURKB are KRAS targets in lung cancer and whether targeting these kinases might be therapeutically beneficial.
Methods:
In order to determine whether oncogenic KRAS induces Aurora kinase expression, we used qPCR and western blotting in three different lung cell-based models of gain- or loss-of-function of KRAS. In order to determine the functional role of these kinases in KRAS-induced transformation, we generated KRAS-positive A549 and H358 cells with stable and inducible shRNA-mediated knockdown of AURKA or AURKB and evaluated transformation in vitro and tumor growth in vivo. In order to validate AURKA and/or AURKB as therapeutically relevant KRAS targets in lung cancer, we treated A549 and H358 cells, as well as two different lung cell based models of gain-of-function of KRAS with a dual Aurora kinase inhibitor and performed functional in vitro assays.
Results:
We determined that KRAS positively regulates AURKA and AURKB expression. Furthermore, in KRAS-positive H358 and A549 cell lines, inducible knockdown of AURKA or AURKB, as well as treatment with a dual AURKA/AURKB inhibitor, decreased growth, viability, proliferation, transformation, and induced apoptosis in vitro. In addition, inducible shRNA-mediated knockdown of AURKA in A549 cells decreased tumor growth in vivo. More importantly, dual pharmacological inhibiton of AURKA and AURKB reduced growth, viability, transformation, and induced apoptosis in vitro in an oncogenic KRAS-dependent manner, indicating that Aurora kinase inhibition therapy can specifically target KRAS-transformed cells.
Conclusions:
Our results support our hypothesis that Aurora kinases are important KRAS targets in lung cancer and suggest Aurora kinase inhibition as a novel approach for KRAS-induced lung cancer therapy.
Insights
Activating mutations in KRAS drive lung cancer, but targeted therapies are lacking. This study reveals that Aurora kinases (AURKA and AURKB) are key KRAS targets, and inhibiting them shows promise for treating KRAS-driven lung cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Activating KRAS mutations are common in lung cancer, driving oncogenesis.
- Existing therapies targeting KRAS have shown limited efficacy.
- Identifying novel KRAS targets is crucial for effective lung cancer treatment.
Purpose of the Study:
- To investigate if Aurora kinases A (AURKA) and B (AURKB) are targets of oncogenic KRAS in lung cancer.
- To evaluate the therapeutic potential of inhibiting AURKA and AURKB in KRAS-driven lung cancer.
Main Methods:
- Quantitative PCR (qPCR) and western blotting assessed Aurora kinase expression in KRAS-altered lung cancer cell models.
- Stable and inducible shRNA-mediated knockdown of AURKA/AURKB was used to evaluate their role in KRAS-induced transformation.
- Functional assays were performed on lung cancer cells treated with a dual AURKA/AURKB inhibitor.
Main Results:
- KRAS was found to positively regulate AURKA and AURKB expression.
- Knockdown or inhibition of AURKA/AURKB decreased proliferation, viability, and transformation, while inducing apoptosis in KRAS-positive lung cancer cells.
- Dual inhibition of AURKA and AURKB demonstrated oncogenic KRAS-dependent efficacy in vitro and reduced tumor growth in vivo.
Conclusions:
- Aurora kinases are validated as significant KRAS targets in lung cancer.
- Inhibition of Aurora kinases represents a novel and potentially effective therapeutic strategy for KRAS-driven lung cancers.
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