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Updated: Apr 17, 2026

Detection of Toxin Translocation into the Host Cytosol by Surface Plasmon Resonance
Published on: January 3, 2012
Palytoxin induces dissociation of HSP 27 oligomers through a p38 protein kinase pathway
Chiara Berni1, Mirella Bellocci1, Gian Luca Sala1
1Dipartimento di Scienze della Vita, Università di Modena e Reggio Emilia, Via Campi 287, I-41125 Modena, Italy.
Abstract:
Palytoxin (PlTX) induces a stress response in MCF-7 cells that involves the phosphorylation of HSP 27 at serines 15, 78, and 82 by an as yet undetermined mechanism. We have studied the involvement of major groups of the mitogen-activated protein kinase (MAPK) family in this molecular response and focused our analyses on the ERK1/2, JNK, p38 protein kinase (p38K), and ERK5 pathways. The results show that PlTX induces the activation of JNK and p38 kinase but not ERK1/2 and 5 in MCF-7 cells. Through the use of protein kinase inhibitors, we established that blocking p38K, but not JNK, prevents the phosphorylation of HSP 27 induced by PlTX and that MAPKAPK2 participates in the response induced by the toxin under our experimental conditions. The cell death response induced by PlTX was inhibited by preventing JNK phosphorylation but not by blocking p38K/MAPKAPK2 and HSP 27 phosphorylation. Sucrose density gradient centrifugation revealed that MCF-7 cell extracts contain a heterodisperse population of HSP 27, including oligomers and smaller forms. Treating MCF-7 cells with PlTX caused the dissociation of HSP 27 oligomers, and using inhibitors of the JNK and p38K pathways showed that the dissociation of HSP 27 oligomers induced by PlTX involves a p38K-dependent process. We conclude that the changes induced by PlTX in the HSP 27 stress response protein system proceed through a molecular mechanism involving the activation of the p38 kinase pathway and its substrate, MAPKAK2, leading to dissociation of HSP 27 oligomers and the stabilization of a cellular pool of monomers phosphorylated at serines 15, 78 and 82, which could play a protective role against the death response induced by PlTX.
Insights
Palytoxin (PlTX) activates p38 kinase and MAPKAPK2, leading to HSP 27 oligomer dissociation and phosphorylation in MCF-7 cells. This process may protect cells from PlTX-induced death.
Area of Science:
- Cellular stress response
- Molecular signaling pathways
- Protein phosphorylation
Background:
- Palytoxin (PlTX) triggers a stress response in MCF-7 cells, including Heat Shock Protein 27 (HSP 27) phosphorylation.
- The precise molecular mechanism and specific mitogen-activated protein kinase (MAPK) involvement remain unclear.
Purpose of the Study:
- Investigate the role of MAPK pathways (ERK1/2, JNK, p38K, ERK5) in PlTX-induced HSP 27 phosphorylation.
- Elucidate the signaling cascade downstream of PlTX leading to HSP 27 modification and cellular effects.
Main Methods:
- Utilized MCF-7 cells treated with PlTX.
- Employed protein kinase inhibitors to block specific MAPK pathways.
- Analyzed HSP 27 phosphorylation and oligomerization states using sucrose density gradient centrifugation.
Main Results:
- PlTX activated JNK and p38 kinase, but not ERK1/2 or ERK5.
- p38 kinase inhibition, not JNK inhibition, blocked PlTX-induced HSP 27 phosphorylation.
- PlTX treatment caused dissociation of HSP 27 oligomers, a p38 kinase-dependent process.
- JNK phosphorylation inhibition, not p38K/MAPKAPK2, reduced PlTX-induced cell death.
Conclusions:
- PlTX-induced HSP 27 phosphorylation involves p38 kinase activation and MAPKAPK2.
- This leads to HSP 27 oligomer dissociation and stabilization of phosphorylated monomers, potentially offering cellular protection.
- Distinct MAPK pathways mediate HSP 27 phosphorylation and PlTX-induced cell death.
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