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Updated: Aug 27, 2025

The Use of Reverse Phase Protein Arrays RPPA to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
Quantitative Phosphoproteomics Analysis Uncovers PAK2- and CDK1-Mediated Malignant Signaling Pathways in Clear Cell
Aydanur Senturk1, Ayse T Sahin1, Ayse Armutlu2
1Department of Molecular Biology and Genetics, Koc University, Istanbul, Turkey.
Abstract:
Clear cell Renal Cell Carcinoma (ccRCC) is among the 10 most common cancers in both men and women and causes more than 140,000 deaths worldwide every year. In order to elucidate the underlying molecular mechanisms orchestrated by phosphorylation modifications, we performed a comprehensive quantitative phosphoproteomics characterization of ccRCC tumor and normal adjacent tissues. Here, we identified 16,253 phosphopeptides, of which more than 9000 were singly quantified. Our in-depth analysis revealed 600 phosphopeptides to be significantly differentially regulated between tumor and normal tissues. Moreover, our data revealed that significantly up-regulated phosphoproteins are associated with protein synthesis and cytoskeletal re-organization which suggests proliferative and migratory behavior of renal tumors. This is supported by a mesenchymal profile of ccRCC phosphorylation events. Our rigorous characterization of the renal phosphoproteome also suggests that both epidermal growth factor receptor and vascular endothelial growth factor receptor are important mediators of phospho signaling in RCC pathogenesis. Furthermore, we determined the kinases p21-activated kinase 2, cyclin-dependent kinase 1 and c-Jun N-terminal kinase 1 to be master kinases that are responsible for phosphorylation of many substrates associated with cell proliferation, inflammation and migration. Moreover, high expression of p21-activated kinase 2 is associated with worse survival outcome of ccRCC patients. These master kinases are targetable by inhibitory drugs such as fostamatinib, minocycline, tamoxifen and bosutinib which can serve as novel therapeutic agents for ccRCC treatment.
Insights
This study reveals key phosphorylation changes in clear cell renal cell carcinoma (ccRCC), identifying master kinases involved in tumor growth and migration. These findings suggest potential new therapeutic targets for ccRCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Proteomics
Background:
- Clear cell renal cell carcinoma (ccRCC) is a prevalent cancer with significant mortality.
- Understanding the molecular mechanisms of ccRCC is crucial for developing effective treatments.
Purpose of the Study:
- To comprehensively characterize the phosphoproteome of ccRCC.
- To identify differentially regulated phosphopeptides and associated signaling pathways.
- To uncover potential therapeutic targets for ccRCC.
Main Methods:
- Quantitative phosphoproteomics was performed on ccRCC tumor and adjacent normal tissues.
- Analysis of identified phosphopeptides to determine differential regulation.
- Kinase activity and pathway enrichment analysis.
Main Results:
- Over 16,000 phosphopeptides were identified, with over 600 significantly altered in ccRCC.
- Upregulated phosphoproteins are linked to protein synthesis and cytoskeletal reorganization, indicating proliferative and migratory behavior.
- Epidermal growth factor receptor (EGFR) and vascular endothelial growth factor receptor (VEGFR) signaling are implicated.
- p21-activated kinase 2 (PAK2), cyclin-dependent kinase 1 (CDK1), and c-Jun N-terminal kinase 1 (JNK1) were identified as master kinases.
- High PAK2 expression correlates with poorer patient survival.
Conclusions:
- Phosphorylation plays a critical role in ccRCC pathogenesis, driving proliferation and migration.
- PAK2, CDK1, and JNK1 are key kinases in ccRCC signaling.
- Targeting these kinases with existing drugs may offer novel therapeutic strategies for ccRCC.
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