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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
Quantitative proteomics to study a small molecule targeting the loss of von Hippel-Lindau in renal cell carcinomas
Nadia Bouhamdani1,2, Andrew Joy2, David Barnett2
1Department of Chemistry and Biochemistry, Université de Moncton, Moncton, E1A 3E9, Canada.
Abstract:
Inactivation of the tumor suppressor gene, von Hippel-Lindau (VHL), is known to play an important role in the development of sporadic clear cell renal cell carcinomas (ccRCCs). Even if available targeted therapies for metastatic RCCs (mRCCs) have helped to improve progression-free survival rates, they have no durable clinical response. We have previously shown the feasibility of specifically targeting the loss of VHL with the identification of a small molecule, STF-62247. Understanding its functionality is crucial for developing durable personalized therapeutic agents differing from those available targeting hypoxia inducible factor (HIF-) pathways. By using SILAC proteomics, we identified 755 deregulated proteins in response to STF-62247 that were further analyzed by ingenuity pathway analysis (IPA). Bioinformatics analyses predicted alterations in 37 signaling pathways in VHL-null cells in response to treatment. Validation of some altered pathways shows that STF-62247's selectivity is linked to an important inhibition of mTORC1 activation in VHL-null cells leading to protein synthesis arrest, a mechanism differing from two allosteric inhibitors Rapamycin and Everolimus. Altogether, our study identified signaling cascades driving STF-62247 response and brings further knowledge for this molecule that shows selectivity for the loss of VHL. The use of a global SILAC approach was successful in identifying novel affected signaling pathways that could be exploited for the development of new personalized therapeutic strategies to target VHL-inactivated RCCs.
Insights
A novel molecule, STF-62247, selectively targets von Hippel-Lindau (VHL)-inactivated clear cell renal cell carcinoma (ccRCC) by inhibiting mTORC1. This offers a new therapeutic strategy for VHL-deficient cancers.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Von Hippel-Lindau (VHL) gene inactivation is critical in clear cell renal cell carcinoma (ccRCC) development.
- Current metastatic RCC (mRCC) therapies offer limited durable responses.
- A previously identified small molecule, STF-62247, targets VHL loss.
Purpose of the Study:
- To elucidate the functional mechanisms of STF-62247 in VHL-null cells.
- To identify novel signaling pathways affected by STF-62247.
- To explore STF-62247 as a personalized therapeutic agent for VHL-inactivated ccRCC.
Main Methods:
- Stable Isotope Labeling by Amino acids in Cell culture (SILAC) proteomics to identify protein changes.
- Ingenuity Pathway Analysis (IPA) for bioinformatics analysis of deregulated proteins.
- Validation of predicted signaling pathway alterations.
Main Results:
- STF-62247 treatment deregulated 755 proteins in VHL-null cells.
- Bioinformatics analysis predicted 37 altered signaling pathways.
- STF-62247 selectively inhibited mTORC1 activation, causing protein synthesis arrest, distinct from Rapamycin and Everolimus.
Conclusions:
- STF-62247 demonstrates selectivity for VHL-loss, offering a novel mechanism of action.
- The study identified key signaling cascades driving STF-62247 response.
- SILAC proteomics successfully uncovered pathways for developing personalized therapies against VHL-inactivated ccRCC.
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