Hyperfluidization-coupled membrane microdomain reorganization is linked to activation of the heat shock response in a murine melanoma cell line
- 8 May 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (19) , 7945-7950
- https://doi.org/10.1073/pnas.0702557104
Abstract
Targeting of the Hsp function in tumor cells is currently being assessed as potential anticancer therapy. An improved understanding of the molecular signals that trigger or attenuate the stress protein response is essential for advances to be made in this field. The present study provides evidence that the membrane fluidizer benzyl alcohol (BA), a documented nondenaturant, acts as a chaperone inducer in B16(F10) melanoma cells. It is demonstrated that this effect relies basically on heat shock transcription factor 1 (HSF1) activation. Under the conditions tested, the BA-induced Hsp response involves the up-regulation of a subset of hsp genes. It is shown that the same level of membrane fluidization (estimated in the core membrane region) attained with the closely analogous phenethyl alcohol (PhA) does not generate a stress protein signal. BA, at a concentration that activates heat shock genes, exerts a profound effect on the melting of raft-like cholesterol-sphingomyelin domains in vitro, whereas PhA, at a concentration equipotent with BA in membrane fluidization, has no such effect. Furthermore, through the in vivo labeling of melanoma cells with a fluorescein labeled probe that inserts into the cholesterol-rich membrane domains [fluorescein ester of polyethylene glycol-derivatized cholesterol (fPEG-Chol)], we found that, similarly to heat stress per se, BA, but not PhA, initiates profound alterations in the plasma membrane microdomain structure. We suggest that, apart from membrane hyperfluidization in the deep hydrophobic region, a distinct reorganization of cholesterol-rich microdomains may also be required for the generation and transmission of stress signals to activate hsp genes.Keywords
This publication has 43 references indexed in Scilit:
- G protein-coupled receptors sense fluid shear stress in endothelial cellsProceedings of the National Academy of Sciences, 2006
- Desaturase mutants reveal that membrane rigidification acts as a cold perception mechanism upstream of the diacylglycerol kinase pathway in Arabidopsis cellsFEBS Letters, 2006
- Effect of anti‐tumor ether lipids on ordered domains in model membranesFEBS Letters, 2006
- Lipid Rafts & Co.: An integrated model of membrane organization in T cell activationProgress in Lipid Research, 2006
- The hyperfluidization of mammalian cell membranes acts as a signal to initiate the heat shock protein responseThe FEBS Journal, 2005
- Membrane fluidization triggers membrane remodeling which affects the thermotolerance in Escherichia coliBiochemical and Biophysical Research Communications, 2005
- Native folding of aggregation-prone recombinant proteins in Escherichia coli by osmolytes, plasmid- or benzyl alcohol–overexpressed molecular chaperonesCell Stress and Chaperones, 2005
- Implication of a Small GTPase Rac1 in the Activation of c-Jun N-terminal Kinase and Heat Shock Factor in Response to Heat ShockJournal of Biological Chemistry, 2001
- Ratio‐fluorescence microscopy of lipid oxidation in living cells using C11‐BODIPY581/591FEBS Letters, 1999
- Behavior of vesicular stomatitis virus glycoprotein in mouse LM cells with modified membrane-phospholipidsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1980