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The Use of Reverse Phase Protein Arrays RPPA to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
The ribosomal protein S6 in renal cell carcinoma: functional relevance and potential as biomarker
Maximilian Knoll1,2, Stephan Macher-Goeppinger1,2, Jürgen Kopitz1
1Institute of Pathology, University of Heidelberg, Im Neuenheimer Feld, Heidelberg, Germany.
Abstract:
Inhibitors of the mTOR pathway, such as everolimus, are promising compounds to treat patients with renal cell carcinomas (RCCs). However, the precise mechanisms of action are far from clear, and biomarkers predicting the response to mTOR inhibitors are still missing. Here, we provide evidence that in RCCs the rpS6 protein is the major mediator of anti-tumoral effects exerted by everolimus. Inhibition of mTOR signaling results in substantially decreased clonogenicity and proliferation of RCC cells, but did not significantly induce apoptosis. Everolimus effectively blocked protein biosynthesis both in vitro and in a novel ex vivo tissue slice model using fresh vital human RCC tissue. Compared to other components of the mTOR pathway, phosphorylation of rpS6 was most effectively downregulated by everolimus. Importantly, siRNA-mediated downregulation of rpS6, but not of 4ebp1 or p27, abolished the inhibitory effects of everolimus on proliferation and protein synthesis. Moreover, we analyzed the tissue expression of phosphorylated rpS6 (p-rpS6) and non-phosphorylated rpS6 in a large collection of patients with RCCs (n=598 and n=548, respectively). Expression of both proteins qualified as independent negative prognostic markers with a substantially shorter survival of patients with RCCs exhibiting high levels of rpS6 and p-rpS6. Taken together, our functional studies identified rpS6 as a main mediator of the anti-tumoral activity of Everolimus. Therefore, further (pre-)clinical evaluations of rpS6 as a predictive marker for everolimus-based treatment for RCC patients are warranted. Finally, the combined detection of phosphorylated and non-phosphorylated rpS6 could represent a robust prognostic marker to identify patients with high risk RCCs.
Insights
Everolimus, an mTOR inhibitor, effectively treats renal cell carcinoma (RCC) by targeting the rpS6 protein. High rpS6 levels indicate poor prognosis, suggesting rpS6 as a predictive biomarker for RCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Renal cell carcinoma (RCC) treatment remains challenging, with mTOR inhibitors like everolimus showing promise.
- The exact mechanisms of action for mTOR inhibitors in RCC are not fully understood, and predictive biomarkers are lacking.
Purpose of the Study:
- To elucidate the role of rpS6 protein in mediating the anti-tumoral effects of everolimus in RCC.
- To investigate rpS6 as a potential predictive biomarker for everolimus response and as a prognostic marker in RCC patients.
Main Methods:
- In vitro and ex vivo tissue slice models were used to assess the effects of everolimus on RCC cells.
- siRNA-mediated knockdown of rpS6, 4ebp1, and p27 was performed to evaluate their role in everolimus's anti-tumoral activity.
- Tissue expression of phosphorylated rpS6 (p-rpS6) and non-phosphorylated rpS6 was analyzed in a large cohort of RCC patients.
Main Results:
- Everolimus significantly reduced RCC cell clonogenicity and proliferation, and blocked protein biosynthesis.
- Phosphorylation of rpS6 was the most effectively downregulated component of the mTOR pathway by everolimus.
- Downregulation of rpS6, but not 4ebp1 or p27, abolished everolimus's inhibitory effects.
- High expression of both rpS6 and p-rpS6 correlated with shorter patient survival, identifying them as negative prognostic markers.
Conclusions:
- rpS6 is identified as a key mediator of everolimus's anti-tumoral activity in RCC.
- rpS6 warrants further evaluation as a predictive marker for everolimus-based therapy in RCC.
- Combined detection of rpS6 and p-rpS6 may serve as a prognostic marker for high-risk RCC patients.
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