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Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells

Cellular membranes respond rapidly to various environmental perturbations. Previously we showed that modulations in membrane fluidity achieved by heat stress (HS) resulted in pronounced membrane organization alterations which could be intimately linked to the expression and cellular distribution of...

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Autores principales: Balogh, Gábor, Maulucci, Giuseppe, Gombos, Imre, Horváth, Ibolya, Török, Zsolt, Péter, Mária, Fodor, Elfrieda, Páli, Tibor, Benkő, Sándor, Parasassi, Tiziana, De Spirito, Marco, Harwood, John L., Vígh, László
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3116874/
https://www.ncbi.nlm.nih.gov/pubmed/21698159
http://dx.doi.org/10.1371/journal.pone.0021182
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author Balogh, Gábor
Maulucci, Giuseppe
Gombos, Imre
Horváth, Ibolya
Török, Zsolt
Péter, Mária
Fodor, Elfrieda
Páli, Tibor
Benkő, Sándor
Parasassi, Tiziana
De Spirito, Marco
Harwood, John L.
Vígh, László
author_facet Balogh, Gábor
Maulucci, Giuseppe
Gombos, Imre
Horváth, Ibolya
Török, Zsolt
Péter, Mária
Fodor, Elfrieda
Páli, Tibor
Benkő, Sándor
Parasassi, Tiziana
De Spirito, Marco
Harwood, John L.
Vígh, László
author_sort Balogh, Gábor
collection PubMed
description Cellular membranes respond rapidly to various environmental perturbations. Previously we showed that modulations in membrane fluidity achieved by heat stress (HS) resulted in pronounced membrane organization alterations which could be intimately linked to the expression and cellular distribution of heat shock proteins. Here we examine heat-induced membrane changes using several visualisation methods. With Laurdan two-photon microscopy we demonstrate that, in contrast to the enhanced formation of ordered domains in surface membranes, the molecular disorder is significantly elevated within the internal membranes of cells preexposed to mild HS. These results were compared with those obtained by anisotropy, fluorescence lifetime and electron paramagnetic resonance measurements. All probes detected membrane changes upon HS. However, the structurally different probes revealed substantially distinct alterations in membrane heterogeneity. These data call attention to the careful interpretation of results obtained with only a single label. Subtle changes in membrane microstructure in the decision-making of thermal cell killing could have potential application in cancer therapy.
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spelling pubmed-31168742011-06-22 Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells Balogh, Gábor Maulucci, Giuseppe Gombos, Imre Horváth, Ibolya Török, Zsolt Péter, Mária Fodor, Elfrieda Páli, Tibor Benkő, Sándor Parasassi, Tiziana De Spirito, Marco Harwood, John L. Vígh, László PLoS One Research Article Cellular membranes respond rapidly to various environmental perturbations. Previously we showed that modulations in membrane fluidity achieved by heat stress (HS) resulted in pronounced membrane organization alterations which could be intimately linked to the expression and cellular distribution of heat shock proteins. Here we examine heat-induced membrane changes using several visualisation methods. With Laurdan two-photon microscopy we demonstrate that, in contrast to the enhanced formation of ordered domains in surface membranes, the molecular disorder is significantly elevated within the internal membranes of cells preexposed to mild HS. These results were compared with those obtained by anisotropy, fluorescence lifetime and electron paramagnetic resonance measurements. All probes detected membrane changes upon HS. However, the structurally different probes revealed substantially distinct alterations in membrane heterogeneity. These data call attention to the careful interpretation of results obtained with only a single label. Subtle changes in membrane microstructure in the decision-making of thermal cell killing could have potential application in cancer therapy. Public Library of Science 2011-06-16 /pmc/articles/PMC3116874/ /pubmed/21698159 http://dx.doi.org/10.1371/journal.pone.0021182 Text en Balogh et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Balogh, Gábor
Maulucci, Giuseppe
Gombos, Imre
Horváth, Ibolya
Török, Zsolt
Péter, Mária
Fodor, Elfrieda
Páli, Tibor
Benkő, Sándor
Parasassi, Tiziana
De Spirito, Marco
Harwood, John L.
Vígh, László
Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells
title Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells
title_full Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells
title_fullStr Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells
title_full_unstemmed Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells
title_short Heat Stress Causes Spatially-Distinct Membrane Re-Modelling in K562 Leukemia Cells
title_sort heat stress causes spatially-distinct membrane re-modelling in k562 leukemia cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3116874/
https://www.ncbi.nlm.nih.gov/pubmed/21698159
http://dx.doi.org/10.1371/journal.pone.0021182
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