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Intracellular Refolding Assay
Published on: January 24, 2012
Curcumin Affects HSP60 Folding Activity and Levels in Neuroblastoma Cells
Celeste Caruso Bavisotto1,2, Antonella Marino Gammazza1,2, Filippa Lo Cascio1
1Department of Biomedicine, Neuroscience and Advanced Diagnostics (BIND), Section of Human Anatomy, University of Palermo, 90127 Palermo, Italy.
Abstract:
The fundamental challenge in fighting cancer is the development of protective agents able to interfere with the classical pathways of malignant transformation, such as extracellular matrix remodeling, epithelial-mesenchymal transition and, alteration of protein homeostasis. In the tumors of the brain, proteotoxic stress represents one of the main triggering agents for cell transformation. Curcumin is a natural compound with anti-inflammatory and anti-cancer properties with promising potential for the development of therapeutic drugs for the treatment of cancer as well as neurodegenerative diseases. Among the mediators of cancer development, HSP60 is a key factor for the maintenance of protein homeostasis and cell survival. High HSP60 levels were correlated, in particular, with cancer development and progression, and for this reason, we investigated the ability of curcumin to affect HSP60 expression, localization, and post-translational modifications using a neuroblastoma cell line. We have also looked at the ability of curcumin to interfere with the HSP60/HSP10 folding machinery. The cells were treated with 6, 12.5, and 25 µM of curcumin for 24 h, and the flow cytometry analysis showed that the compound induced apoptosis in a dose-dependent manner with a higher percentage of apoptotic cells at 25 µM. This dose of curcumin-induced a decrease in HSP60 protein levels and an upregulation of HSP60 mRNA expression. Moreover, 25 µM of curcumin reduced HSP60 ubiquitination and nitration, and the chaperonin levels were higher in the culture media compared with the untreated cells. Furthermore, curcumin at the same dose was able to favor HSP60 folding activity. The reduction of HSP60 levels, together with the increase in its folding activity and the secretion in the media led to the supposition that curcumin might interfere with cancer progression with a protective mechanism involving the chaperonin.
Insights
Curcumin, a natural compound, shows anti-cancer potential by inducing apoptosis in neuroblastoma cells. It also affects Heat Shock Protein 60 (HSP60), a key factor in cancer progression, suggesting a protective mechanism.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Cancer progression involves complex pathways including protein homeostasis alteration.
- Proteotoxic stress is a key factor in brain tumor development.
- Heat Shock Protein 60 (HSP60) is crucial for protein homeostasis and cell survival, with elevated levels linked to cancer progression.
Purpose of the Study:
- To investigate curcumin's effects on HSP60 expression, localization, and post-translational modifications in neuroblastoma cells.
- To explore curcumin's interference with the HSP60/HSP10 folding machinery.
- To assess curcumin's potential as a therapeutic agent against cancer by modulating HSP60.
Main Methods:
- Neuroblastoma cells were treated with varying concentrations of curcumin (6, 12.5, 25 µM) for 24 hours.
- Flow cytometry was used to analyze apoptosis induction.
- Western blotting and ELISA were employed to measure HSP60 protein levels, mRNA expression, ubiquitination, nitration, and chaperonin levels in cell culture media.
Main Results:
- Curcumin induced apoptosis in a dose-dependent manner, with significant effects at 25 µM.
- Treatment with 25 µM curcumin decreased HSP60 protein levels but increased HSP60 mRNA expression.
- Curcumin reduced HSP60 ubiquitination and nitration, increased chaperonin levels in the media, and enhanced HSP60 folding activity.
Conclusions:
- Curcumin exhibits anti-cancer properties by inducing apoptosis and modulating HSP60.
- Curcumin's interference with HSP60 homeostasis, including reduced degradation and enhanced folding activity, suggests a protective mechanism against cancer progression.
- Curcumin holds promise as a therapeutic agent for neuroblastoma and potentially other cancers by targeting HSP60 pathways.

