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Sunitinib activates Axl signaling in renal cell cancer
Johannes C van der Mijn1,2, Henk J Broxterman1, Jaco C Knol1
1Department of Medical Oncology, VU University Medical Center, Amsterdam, The Netherlands.
Abstract:
Mass spectrometry-based phosphoproteomics provides a unique unbiased approach to evaluate signaling network in cancer cells. The tyrosine kinase inhibitor sunitinib is registered as treatment for patients with renal cell cancer (RCC). We investigated the effect of sunitinib on tyrosine phosphorylation in RCC tumor cells to get more insight in its mechanism of action and thereby to find potential leads for combination treatment strategies. Sunitinib inhibitory concentrations of proliferation (IC50) of 786-O, 769-p and A498 RCC cells were determined by MTT-assays. Global tyrosine phosphorylation was measured by LC-MS/MS after immunoprecipitation with the antiphosphotyrosine antibody p-TYR-100. Phosphoproteomic profiling of 786-O cells yielded 1519 phosphopeptides, corresponding to 675 unique proteins including 57 different phosphorylated protein kinases. Compared to control, incubation with sunitinib at its IC50 of 2 µM resulted in downregulation of 86 phosphopeptides including CDK5, DYRK3, DYRK4, G6PD, PKM and LDH-A, while 94 phosphopeptides including Axl, FAK, EPHA2 and p38α were upregulated. Axl- (y702), FAK- (y576) and p38α (y182) upregulation was confirmed by Western Blot in 786-O and A498 cells. Subsequent proliferation assays revealed that inhibition of Axl with a small molecule inhibitor (R428) sensitized 786-O RCC cells and immortalized endothelial cells to sunitinib up to 3 fold. In conclusion, incubation with sunitinib of RCC cells causes significant upregulation of multiple phosphopeptides including Axl. Simultaneous inhibition of Axl improves the antitumor activity of sunitinib. We envision that evaluation of phosphoproteomic changes by TKI treatment enables identification of new targets for combination treatment strategies.
Insights
Sunitinib treatment in renal cell cancer (RCC) cells alters tyrosine phosphorylation, upregulating Axl. Combining sunitinib with Axl inhibition enhances its antitumor activity, suggesting new combination strategies for RCC treatment.
Area of Science:
- Oncology
- Biochemistry
- Proteomics
Background:
- Renal cell cancer (RCC) is a significant health concern.
- Sunitinib is a tyrosine kinase inhibitor (TKI) used to treat RCC.
- Understanding sunitinib's mechanism of action is crucial for improving treatment strategies.
Purpose of the Study:
- To investigate the effect of sunitinib on tyrosine phosphorylation in RCC cells.
- To identify potential targets for combination therapy with sunitinib.
- To gain insight into sunitinib's mechanism of action in RCC.
Main Methods:
- Mass spectrometry-based phosphoproteomics (LC-MS/MS) was employed to analyze global tyrosine phosphorylation.
- MTT assays were used to determine sunitinib's inhibitory concentrations (IC50).
- Western blotting confirmed the upregulation of specific phosphopeptides.
Main Results:
- Sunitinib treatment downregulated 86 phosphopeptides and upregulated 94 phosphopeptides in RCC cells.
- Key upregulated phosphopeptides included Axl, FAK, and p38α.
- Inhibition of Axl sensitized RCC cells to sunitinib, increasing its antitumor activity.
Conclusions:
- Sunitinib treatment in RCC cells leads to significant upregulation of phosphopeptides, notably Axl.
- Simultaneous inhibition of Axl enhances the antitumor efficacy of sunitinib.
- Phosphoproteomic analysis of TKI treatment can reveal novel targets for combination therapies in cancer.
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