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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
Reverse-phase protein microarrays (RPPA) as a diagnostic and therapeutic guide in multidrug resistant leukemia
Tullia Maraldi1, Jessika Bertacchini, Marta Benincasa
1Department of Anatomy and Histology and CIPro Proteomics Centre, University of Modena and Reggio Emilia, I-41100 Modena, Italy.
Abstract:
Reverse-phase microarray assays using phospho-specific antibodies (RPPA) can directly measure levels of phosphorylated protein isoforms. In the current study, lysates from parental and multidrug resistant (MDR) CEM leukemia cells were spotted onto reverse-phase protein microarrays and probed with a panel of phospho-antibodies to ERK, PCK and Akt pathways. In particular, the Akt pathway is considered to play significant roles in leukemia and Akt inhibitor therapy has been proposed as a potential tool in the treatment of this disease. The RPPA data prompted us to investigate deeper this pathway. Here, we found that whereas total Akt1 protein level is higher in parental CEM cells, the activated isoform content, p-Akt1, increases in doxorubicin-selected CEM cells (MDR-CEM). This was backed up by Western blot analysis, confirming that Akt1 activity/phosphorylation may be up-regulated in MDR-CEM cells. Further exploration of inhibitory therapy in this system was evaluated. The TNF-related apoptosis-inducing ligand, TRAIL, has been shown to selectively kill tumor cells. Herein, we describe that in MDR-CEM cells TRAIL responsiveness correlates with a reduced expression of endogenous Akt1, suggesting that the MDR phenotype associated to P-gp sensitizes cells to TRAIL therapy.
Insights
Multidrug-resistant leukemia cells show increased activated Akt1, suggesting Akt inhibitor therapy. These cells also become more sensitive to TRAIL therapy, correlating with reduced Akt1 expression.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- The Akt pathway is crucial in leukemia development and progression.
- Akt inhibitor therapy is a potential treatment strategy for leukemia.
- Multidrug resistance (MDR) is a significant challenge in leukemia treatment.
Purpose of the Study:
- To investigate the role of the Akt pathway in multidrug-resistant (MDR) leukemia cells.
- To explore the potential of Akt inhibitor and TRAIL therapies in MDR leukemia.
Main Methods:
- Reverse-phase protein microarray (RPPA) assays using phospho-specific antibodies.
- Western blot analysis.
- Evaluation of TRAIL (TNF-related apoptosis-inducing ligand) responsiveness.
Main Results:
- MDR-CEM leukemia cells exhibit increased levels of phosphorylated Akt1 (p-Akt1) compared to parental cells.
- Western blot confirmed elevated Akt1 activity/phosphorylation in MDR-CEM cells.
- MDR-CEM cells demonstrated increased sensitivity to TRAIL therapy, which correlated with reduced Akt1 expression.
Conclusions:
- The Akt pathway is dysregulated in MDR leukemia, with increased activation.
- Akt pathway modulation and TRAIL therapy show promise for treating MDR leukemia.
- The MDR phenotype, associated with P-glycoprotein (P-gp), sensitizes cells to TRAIL therapy.
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