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Published on: September 19, 2018
Phosphoproteomic Analysis Identifies TYRO3 as a Mediator of Sunitinib Resistance in Metastatic Thymomas
Stefan Küffer1, Jessica Grabowski1, Satoru Okada1,2
1Institute of Pathology, University Medical Center Göttingen, University of Göttingen, 37075 Göttingen, Germany.
Background:
After initially responding to empiric radio-chemotherapy, most advanced thymomas (TH) and thymic carcinomas (TC) become refractory and require second-line therapy. The multi-target receptor tyrosine kinase (RTK) inhibitor, sunitinib, is one of the few options, especially in patients with thymic carcinomas, and has resulted in partial remissions and prolonged overall survival. However, sunitinib shows variable activity in thymomas, and not all patients benefit equally. A better understanding of its mode of action and the definition of predictive biomarkers would help select patients who profit most.
Methods:
Six cell lines were treated with sunitinib in vitro. Cell viability was measured by MTS assay and used to define in vitro responders and non-responders. A quantitative real-time assay simultaneously measuring the phosphorylation of 144 tyrosine kinase substrates was used to correlate cell viability with alterations of the phospho-kinome, calculate a sunitinib response index (SRI), and impute upstream tyrosine kinases. Sunitinib was added to protein lysates of 29 malignant TH and TC. Lysates were analyzed with the same phosphorylation assay. The SRI tentatively classified cases into potential clinical responders and non-responders. In addition, the activation patterns of 44 RTKs were studied by phospho-RTK arrays in 37 TH and TC.
Results:
SRI application separated thymic epithelial tumors (TET) in potential sunitinib responders and resistant cases. Upstream kinase prediction identified multiple RTKs potentially involved in sunitinib response, many of which were subsequently shown to be differentially overexpressed in TH and TC. Among these, TYRO3/Dtk stood out since it was exclusively present in metastatic TH. The function of TYRO3 as a mediator of sunitinib resistance was experimentally validated in vitro.
Conclusions:
Using indirect and direct phosphoproteomic analyses to predict sunitinib response in malignant TET, we have shown that TH and TC express multiple important sunitinib target RTKs. Among these, TYRO3 was identified as a potent mediator of sunitinib resistance activity, specifically in metastatic TH. TYRO3 may thus be both a novel biomarker of sunitinib resistance and a potential therapeutic target in advanced thymomas and thymic carcinomas.
Insights
Sunitinib shows variable efficacy in thymomas and thymic carcinomas. This study identified TYRO3 as a key mediator of sunitinib resistance in metastatic thymomas, suggesting it as a potential biomarker and therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Advanced thymomas (TH) and thymic carcinomas (TC) often become resistant to initial radio-chemotherapy, necessitating second-line treatments like sunitinib.
- Sunitinib, a multi-target receptor tyrosine kinase (RTK) inhibitor, offers a treatment option but exhibits variable efficacy in TH.
- Identifying predictive biomarkers for sunitinib response is crucial for patient selection and optimizing treatment outcomes.
Purpose of the Study:
- To investigate the molecular mechanisms underlying sunitinib response and resistance in thymic epithelial tumors (TET).
- To identify potential biomarkers that predict patient response to sunitinib therapy.
- To explore novel therapeutic targets for advanced TH and TC.
Main Methods:
- In vitro treatment of six cell lines with sunitinib to assess viability and define responders/non-responders.
- Quantitative real-time assays to measure phosphorylation of 144 tyrosine kinase substrates and calculate a sunitinib response index (SRI).
- Analysis of RTK activation patterns in 37 malignant TH and TC samples using phospho-RTK arrays.
Main Results:
- The sunitinib response index (SRI) successfully differentiated between potential sunitinib responders and resistant cases in TET.
- Multiple RTKs were implicated in sunitinib response, with differential overexpression observed in TH and TC.
- TYRO3/Dtk was identified as a mediator of sunitinib resistance, particularly in metastatic TH, and its function was validated in vitro.
Conclusions:
- Phosphoproteomic analyses can predict sunitinib response in malignant TET.
- TYRO3 is a significant mediator of sunitinib resistance in metastatic thymomas and may serve as a predictive biomarker.
- TYRO3 represents a potential therapeutic target for advanced thymomas and thymic carcinomas, offering new avenues for treatment.
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