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Published on: July 13, 2018
Mitochondrial heat shock protein mortalin as potential target for therapies based on oxidative stress
Ana Carolina Pagliarone1, Edwin David Castañeda1, Jhonne Pedro Pedott Santana1
1Lab. of Applied Immunology, Department of Genetics and Evolution, Federal University of São Carlos, São Carlos, SP, Brazil.
Background:
Treatments based on production of reactive oxygen species for bladder cancer such as photodynamic therapy (PDT) have been marginalized due to low specificity and the existence of resistance mainly associated with the up-regulation of Heat Shock Proteins (HSPs). To overcome these barriers, the establishment of strategies combining PDTs with HSP inhibitors may be promising and the identification of HSPs involved with oxidative stress from bladder tumors in animal models represents a key step in this direction.
Materials:
Thus, the present study aims to identify cytosolic and mitochondrial HSPs up expressed in murine bladder tumors and in the urothelial carcinoma cell line MB49 by qRT-PCR screening, and to analyze the importance of the activity of the HSPs associated with oxidative stress protection in the survival of the MB49 using strategy of inhibition in vitro.
Results:
Results showed that both tumor tissues and MB49 cells in culture had significant overexpression of the mitochondrial HSPA9 (mortalin) and HSP60 mRNAs, while the cytosolic HSP90 was overexpressed only in the tumor. The effect of mortalin in the MB49 cells survival under oxidative stress was evaluated in vitro in presence of the specific inhibitor MKT-077 and H2O2. The findings showed that MB49 viability was permanently reduced by the MKT-077 in a dose-dependent manner by inducing apoptosis or necrosis, mainly under oxidative stress conditions.
Conclusion:
Results suggest that mortalin is preferentially expressed in the MB49 cancer model and plays a key role in tumoral survival, especially under oxidative stress, making this HSP a potential target for an alternative treatment combining PDT with HSP inhibitors.
Insights
Heat Shock Proteins (HSPs) contribute to bladder cancer resistance against treatments like photodynamic therapy (PDT). Targeting mortalin, an overexpressed HSP, with inhibitors like MKT-077 shows promise for novel bladder cancer therapies.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Photodynamic therapy (PDT) for bladder cancer faces challenges due to low specificity and resistance mediated by Heat Shock Proteins (HSPs).
- Overcoming HSP-related resistance is crucial for advancing bladder cancer treatments.
- Identifying specific HSPs involved in oxidative stress resistance in bladder tumors is a key research area.
Purpose of the Study:
- To identify upregulated cytosolic and mitochondrial HSPs in murine bladder tumors and the MB49 urothelial carcinoma cell line.
- To investigate the role of HSPs in protecting MB49 cells from oxidative stress through in vitro inhibition.
Main Methods:
- Quantitative real-time PCR (qRT-PCR) screening for HSP expression in tumor tissues and MB49 cells.
- In vitro inhibition assays using MKT-077 (a mortalin inhibitor) and hydrogen peroxide (H2O2) to assess MB49 cell survival.
Main Results:
- Significant overexpression of mitochondrial HSPA9 (mortalin) and HSP60 mRNA was observed in both tumor tissues and MB49 cells.
- Cytosolic HSP90 was overexpressed exclusively in tumor tissues.
- MKT-077 treatment reduced MB49 cell viability in a dose-dependent manner, inducing apoptosis or necrosis, particularly under oxidative stress.
Conclusions:
- Mortalin is preferentially expressed in the MB49 bladder cancer model and is vital for tumor cell survival, especially under oxidative stress.
- Mortalin represents a potential therapeutic target for bladder cancer.
- Combining PDT with HSP inhibitors, specifically targeting mortalin, may offer a novel treatment strategy.
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