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Electromagnetic fields at mobile phone frequency induce apoptosis and inactivation of the multi-chaperone complex in human epidermoid cancer cells
- Source :
- Università degli Studi di Siena-IRIS
- Publication Year :
- 2005
- Publisher :
- Wiley, 2005.
-
Abstract
- The exposure to non-thermal microwave electromagnetic field (MW-EMF) at 1.95 MHz, a frequency used in mobile communication, affects the refolding kinetics of eukaryotic proteins (Mancinelli et al., 2004). On these basis we have evaluated the in vivo effect of MW-EMF in human epidermoid cancer KB cells. We have found that MW-EMF induces time-dependent apoptosis (45% after 3 h) that is paralleled by an about 2.5-fold decrease of the expression of ras and Raf-1 and of the activity of ras and Erk-1/2. Although also the expression of Akt was reduced its activity was unchanged likely as a consequence of the increased expression of its upstream activator PI3K. In the same experimental conditions an about 2.5-fold increase of the ubiquitination of ras and Raf-1 was also found and the addition for 12 h of proteasome inhibitor lactacystin at 10 microM caused an accumulation of the ubiquitinated isoforms of ras and Raf-1 and counteracted the effects of MW-EMF on ras and Raf-1 expression suggesting an increased proteasome-dependent degradation induced by MW-EMF. The exposure of KB cells to MW-EMF induced a differential activation of stress-dependent pathway with an increase of JNK-1 activity and HSP70 and 27 expression and with a reduction of p38 kinase activity and HSP90 expression. The overexpression of HSP90 induced by transfection of KB cells with a plasmid encoding for the factor completely antagonized the apoptosis and the inactivation of the ras --> Erk-dependent survival signal induced by MW-EMF. Conversely, the inhibition of Erk activity induced by 12 h exposure to 10 mM Mek-1 inhibitor U0126 antagonized the effects induced by HSP90 transfection on apoptosis caused by MW-EMF. In conclusion, these results demonstrate for the first time that MW-EMF induces apoptosis through the inactivation of the ras --> Erk survival signaling due to enhanced degradation of ras and Raf-1 determined by decreased expression of HSP90 and the consequent increase of proteasome dependent degradation.
- Subjects :
- MICROWAVE-RADIATION
MAPK/ERK pathway
GROWTH-FACTOR
KB CELLS
Proteasome Endopeptidase Complex
animal structures
Cell Survival
Physiology
Clinical Biochemistry
Lactacystin
SIGNAL-TRANSDUCTION
Apoptosis
Biology
ALPHA-INTERFERON
chemistry.chemical_compound
Electromagnetic Fields
Cell Line, Tumor
medicine
HSP90
Humans
HSP90 Heat-Shock Proteins
Extracellular Signal-Regulated MAP Kinases
Protein kinase B
PI3K/AKT/mTOR pathway
HEALTH RISKS
Ubiquitin
ACTIVATED PROTEIN-KINASE
Cell Biology
Transfection
Molecular biology
Hsp90
Cell biology
Proto-Oncogene Proteins c-raf
chemistry
Carcinoma, Squamous Cell
ras Proteins
Proteasome inhibitor
biology.protein
HEAT-SHOCK RESPONSE
Chaperone complex
Cell Phone
Molecular Chaperones
Signal Transduction
medicine.drug
Subjects
Details
- ISSN :
- 10974652 and 00219541
- Volume :
- 204
- Database :
- OpenAIRE
- Journal :
- Journal of Cellular Physiology
- Accession number :
- edsair.doi.dedup.....0529b5676ef5b0ffd0661b49bdfad6f5