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The cytotoxic pathway triggered by palytoxin involves a change in the cellular pool of stress response proteins
Gian Luca Sala1, Mirella Bellocci, Gian Paolo Rossini
1Dipartimento di Scienze Biomediche, UniVersità di Modena e Reggio Emilia, Via G Campi 287, I-41125 Modena, Italy, Italy.
Abstract:
We have analyzed the proteome of MCF-7 cells exposed to palytoxin (PlTX), to characterize protein components involved in the death response induced by the toxin. The protein profiles of cell lysates were obtained by two-dimensional (2D) electrophoresis, and we found that four components were increased by PlTX treatment. By tryptic digestion of protein spots in the gels and LC-ESI-MS/MS analysis of resulting peptides, those four components were found to include three isoforms of the heat shock protein (hsp) 27 differing with regard to their phosphrylation state, as well as DJ-1/PARK7. The effects exerted by PlTX on hsp 27 and DJ-1 proteins were further quantified by immunoblotting analyses of proteins separated by monodimensional sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and using antibodies recognizing total hsp 27, the hsp 27 forms phosphorylated in Ser(82), and DJ-1 protein. Dose-response and time-course experiments yielded results that only partially confirmed those found by protein staining after 2D electrophoresis. These findings were further checked by immunoblotting of proteins after fractionation by 2D electrophoresis, and we found that only some forms of those comigrating in a single band upon monodimensional SDS-PAGE were actually increased in extracts from PlTX-treated cells. We obtained evidence that the three hsp 27 isoforms whose relative abundance was increased in MCF-7 cells exposed to PlTX comprised two proteins phosphorylated in Ser(82), whereas the third form most likely contains a phosphorylated amino acid residue other than Ser(82). Moreover, we could show that PlTX treatment determined the accumulation of an oxidized isoform of DJ-1 in MCF-7 cells. We conclude that the toxicity pathway of PlTX in MCF-7 cells involves post-translational modifications of hsp 27 and DJ-1 stress response proteins, comprising a shift in the equilibria among hsp 27 isoforms toward those phosphorylated in Ser(82), as well as the oxidation of DJ-1.
Insights
Palytoxin (PlTX) exposure increases specific forms of heat shock protein 27 (hsp 27) and DJ-1 proteins in MCF-7 cells. These stress response proteins undergo post-translational modifications, including phosphorylation and oxidation, contributing to PlTX toxicity.
Area of Science:
- Cellular toxicology
- Proteomics
- Molecular biology
Background:
- Palytoxin (PlTX) is a potent marine toxin known for its cytotoxicity.
- Understanding the molecular mechanisms of PlTX-induced cell death is crucial for developing countermeasures.
- MCF-7 cells are a widely used human breast cancer cell line for toxicological studies.
Purpose of the Study:
- To identify and characterize protein changes in MCF-7 cells upon exposure to palytoxin (PlTX).
- To elucidate the role of specific stress response proteins, heat shock protein 27 (hsp 27) and DJ-1, in PlTX-induced cell death.
Main Methods:
- Proteomic analysis using two-dimensional (2D) electrophoresis to separate cell lysate proteins.
- Peptide identification via tryptic digestion and liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS).
- Quantitative analysis using immunoblotting with specific antibodies against hsp 27 and DJ-1, including phosphorylated forms.
Main Results:
- PlTX treatment increased the abundance of four protein components in MCF-7 cells.
- These components included three isoforms of heat shock protein 27 (hsp 27) and DJ-1 (also known as PARK7).
- PlTX induced post-translational modifications, specifically phosphorylation of hsp 27 (including Ser(82)) and oxidation of DJ-1.
Conclusions:
- The toxicity pathway of PlTX in MCF-7 cells involves significant post-translational modifications of hsp 27 and DJ-1.
- These modifications include a shift towards phosphorylated hsp 27 isoforms and the accumulation of oxidized DJ-1.
- These findings highlight the involvement of cellular stress response mechanisms in PlTX-induced cytotoxicity.
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