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Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy

Previously, we found that the unconventional small human heat-shock protein HSPB11 inhibits cell death by HSP90 mediated cholesterol-rich membrane microdomain dependent activation of phosphatidylinositol-3 kinase/protein kinase B pathway and by stabilising the mitochondrial membrane systems. Also, p...

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Autores principales: Turi, Zsuzsanna, Hocsak, Eniko, Racz, Boglarka, Szabo, Aliz, Balogh, Andras, Sumegi, Balazs, Gallyas, Ferenc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4392056/
https://www.ncbi.nlm.nih.gov/pubmed/25874011
http://dx.doi.org/10.7150/jca.11494
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author Turi, Zsuzsanna
Hocsak, Eniko
Racz, Boglarka
Szabo, Aliz
Balogh, Andras
Sumegi, Balazs
Gallyas, Ferenc
author_facet Turi, Zsuzsanna
Hocsak, Eniko
Racz, Boglarka
Szabo, Aliz
Balogh, Andras
Sumegi, Balazs
Gallyas, Ferenc
author_sort Turi, Zsuzsanna
collection PubMed
description Previously, we found that the unconventional small human heat-shock protein HSPB11 inhibits cell death by HSP90 mediated cholesterol-rich membrane microdomain dependent activation of phosphatidylinositol-3 kinase/protein kinase B pathway and by stabilising the mitochondrial membrane systems. Also, progressive cytoplasmic expression of HSPB11 correlated with brain tumor malignancy. In the present study we investigated how cytoplasmic abundance of HSPB11 augments tumor malignancy. We up- and downregulated the cytoplasmic level of HSPB11 before paclitaxel exposure in NIH3T3 and HeLa cells, which normally express low and high levels, respectively, of the HSPB11 protein. We examined the paclitaxel-mediated induction of cell death, mitochondrial fission, HSPB11 mitochondrial translocation and inhibitory phosphorylation of dynamin-like protein-1 (DLP1). We found that increasing cytoplasmic abundance of HSPB11 in NIH3T3 cells protected against paclitaxel-induced apoptosis, while suppressing HSPB11 in HeLa cells sensitised the cells toward paclitaxel. Also, paclitaxel enhanced mitochondrial translocation of HSPB11 in wild type HeLa but not in NIH3T3 cells. More importantly, increased cytoplasmic level of HSPB11 in NIH3T3 cells enhanced the inhibitory phosphorylation of DLP1 and attenuated paclitaxel-induced mitochondrial fission. All these results suggest that increased cytoplasmic abundance of HSPB11 augments inhibitory phosphorylation of DLP1 thereby reduces mitochondrial fission that eventually leads to decreased apoptosis. This novel mechanism may explain the resistance to apoptosis and increased malignancy of HSPB11-overexpressing tumours. The clinical significance of this mechanism has already been highlighted by the finding that the kinase inhibitor tyrphostin A9 induces cancer cell death by DLP1-mediated mitochondrial fragmentation.
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spelling pubmed-43920562015-04-13 Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy Turi, Zsuzsanna Hocsak, Eniko Racz, Boglarka Szabo, Aliz Balogh, Andras Sumegi, Balazs Gallyas, Ferenc J Cancer Research Paper Previously, we found that the unconventional small human heat-shock protein HSPB11 inhibits cell death by HSP90 mediated cholesterol-rich membrane microdomain dependent activation of phosphatidylinositol-3 kinase/protein kinase B pathway and by stabilising the mitochondrial membrane systems. Also, progressive cytoplasmic expression of HSPB11 correlated with brain tumor malignancy. In the present study we investigated how cytoplasmic abundance of HSPB11 augments tumor malignancy. We up- and downregulated the cytoplasmic level of HSPB11 before paclitaxel exposure in NIH3T3 and HeLa cells, which normally express low and high levels, respectively, of the HSPB11 protein. We examined the paclitaxel-mediated induction of cell death, mitochondrial fission, HSPB11 mitochondrial translocation and inhibitory phosphorylation of dynamin-like protein-1 (DLP1). We found that increasing cytoplasmic abundance of HSPB11 in NIH3T3 cells protected against paclitaxel-induced apoptosis, while suppressing HSPB11 in HeLa cells sensitised the cells toward paclitaxel. Also, paclitaxel enhanced mitochondrial translocation of HSPB11 in wild type HeLa but not in NIH3T3 cells. More importantly, increased cytoplasmic level of HSPB11 in NIH3T3 cells enhanced the inhibitory phosphorylation of DLP1 and attenuated paclitaxel-induced mitochondrial fission. All these results suggest that increased cytoplasmic abundance of HSPB11 augments inhibitory phosphorylation of DLP1 thereby reduces mitochondrial fission that eventually leads to decreased apoptosis. This novel mechanism may explain the resistance to apoptosis and increased malignancy of HSPB11-overexpressing tumours. The clinical significance of this mechanism has already been highlighted by the finding that the kinase inhibitor tyrphostin A9 induces cancer cell death by DLP1-mediated mitochondrial fragmentation. Ivyspring International Publisher 2015-03-25 /pmc/articles/PMC4392056/ /pubmed/25874011 http://dx.doi.org/10.7150/jca.11494 Text en © 2015 Ivyspring International Publisher. Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited. See http://ivyspring.com/terms for terms and conditions.
spellingShingle Research Paper
Turi, Zsuzsanna
Hocsak, Eniko
Racz, Boglarka
Szabo, Aliz
Balogh, Andras
Sumegi, Balazs
Gallyas, Ferenc
Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy
title Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy
title_full Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy
title_fullStr Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy
title_full_unstemmed Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy
title_short Role of Mitochondrial Network Stabilisation by a Human Small Heat Shock Protein in Tumour Malignancy
title_sort role of mitochondrial network stabilisation by a human small heat shock protein in tumour malignancy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4392056/
https://www.ncbi.nlm.nih.gov/pubmed/25874011
http://dx.doi.org/10.7150/jca.11494
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