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RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response

BACKGROUND: The heat shock response (HSR) is an ancient and highly conserved program of stress-induced gene expression, aimed at reestablishing protein homeostasis to preserve cellular fitness. Cells that fail to activate or maintain this protective response are hypersensitive to proteotoxic stress....

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Autores principales: Meijering, Roelien A. M., Wiersma, Marit, van Marion, Denise M. S., Zhang, Deli, Hoogstra-Berends, Femke, Dijkhuis, Anne-Jan, Schmidt, Martina, Wieland, Thomas, Kampinga, Harm H., Henning, Robert H., Brundel, Bianca J. J. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4508109/
https://www.ncbi.nlm.nih.gov/pubmed/26193369
http://dx.doi.org/10.1371/journal.pone.0133553
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author Meijering, Roelien A. M.
Wiersma, Marit
van Marion, Denise M. S.
Zhang, Deli
Hoogstra-Berends, Femke
Dijkhuis, Anne-Jan
Schmidt, Martina
Wieland, Thomas
Kampinga, Harm H.
Henning, Robert H.
Brundel, Bianca J. J. M.
author_facet Meijering, Roelien A. M.
Wiersma, Marit
van Marion, Denise M. S.
Zhang, Deli
Hoogstra-Berends, Femke
Dijkhuis, Anne-Jan
Schmidt, Martina
Wieland, Thomas
Kampinga, Harm H.
Henning, Robert H.
Brundel, Bianca J. J. M.
author_sort Meijering, Roelien A. M.
collection PubMed
description BACKGROUND: The heat shock response (HSR) is an ancient and highly conserved program of stress-induced gene expression, aimed at reestablishing protein homeostasis to preserve cellular fitness. Cells that fail to activate or maintain this protective response are hypersensitive to proteotoxic stress. The HSR is mediated by the heat shock transcription factor 1 (HSF1), which binds to conserved heat shock elements (HSE) in the promoter region of heat shock genes, resulting in the expression of heat shock proteins (HSP). Recently, we observed that hyperactivation of RhoA conditions cardiomyocytes for the cardiac arrhythmia atrial fibrillation. Also, the HSR is annihilated in atrial fibrillation, and induction of HSR mitigates sensitization of cells to this disease. Therefore, we hypothesized active RhoA to suppress the HSR resulting in sensitization of cells for proteotoxic stimuli. METHODS AND RESULTS: Stimulation of RhoA activity significantly suppressed the proteotoxic stress-induced HSR in HL-1 atrial cardiomyocytes as determined with a luciferase reporter construct driven by the HSF1 regulated human HSP70 (HSPA1A) promoter and HSP protein expression by Western Blot analysis. Inversely, RhoA inhibition boosted the proteotoxic stress-induced HSR. While active RhoA did not preclude HSF1 nuclear accumulation, phosphorylation, acetylation, or sumoylation, it did impair binding of HSF1 to the hsp genes promoter element HSE. Impaired binding results in suppression of HSP expression and sensitized cells to proteotoxic stress. CONCLUSION: These results reveal that active RhoA negatively regulates the HSR via attenuation of the HSF1-HSE binding and thus may play a role in sensitizing cells to proteotoxic stimuli.
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spelling pubmed-45081092015-07-24 RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response Meijering, Roelien A. M. Wiersma, Marit van Marion, Denise M. S. Zhang, Deli Hoogstra-Berends, Femke Dijkhuis, Anne-Jan Schmidt, Martina Wieland, Thomas Kampinga, Harm H. Henning, Robert H. Brundel, Bianca J. J. M. PLoS One Research Article BACKGROUND: The heat shock response (HSR) is an ancient and highly conserved program of stress-induced gene expression, aimed at reestablishing protein homeostasis to preserve cellular fitness. Cells that fail to activate or maintain this protective response are hypersensitive to proteotoxic stress. The HSR is mediated by the heat shock transcription factor 1 (HSF1), which binds to conserved heat shock elements (HSE) in the promoter region of heat shock genes, resulting in the expression of heat shock proteins (HSP). Recently, we observed that hyperactivation of RhoA conditions cardiomyocytes for the cardiac arrhythmia atrial fibrillation. Also, the HSR is annihilated in atrial fibrillation, and induction of HSR mitigates sensitization of cells to this disease. Therefore, we hypothesized active RhoA to suppress the HSR resulting in sensitization of cells for proteotoxic stimuli. METHODS AND RESULTS: Stimulation of RhoA activity significantly suppressed the proteotoxic stress-induced HSR in HL-1 atrial cardiomyocytes as determined with a luciferase reporter construct driven by the HSF1 regulated human HSP70 (HSPA1A) promoter and HSP protein expression by Western Blot analysis. Inversely, RhoA inhibition boosted the proteotoxic stress-induced HSR. While active RhoA did not preclude HSF1 nuclear accumulation, phosphorylation, acetylation, or sumoylation, it did impair binding of HSF1 to the hsp genes promoter element HSE. Impaired binding results in suppression of HSP expression and sensitized cells to proteotoxic stress. CONCLUSION: These results reveal that active RhoA negatively regulates the HSR via attenuation of the HSF1-HSE binding and thus may play a role in sensitizing cells to proteotoxic stimuli. Public Library of Science 2015-07-20 /pmc/articles/PMC4508109/ /pubmed/26193369 http://dx.doi.org/10.1371/journal.pone.0133553 Text en © 2015 Meijering 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
Meijering, Roelien A. M.
Wiersma, Marit
van Marion, Denise M. S.
Zhang, Deli
Hoogstra-Berends, Femke
Dijkhuis, Anne-Jan
Schmidt, Martina
Wieland, Thomas
Kampinga, Harm H.
Henning, Robert H.
Brundel, Bianca J. J. M.
RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response
title RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response
title_full RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response
title_fullStr RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response
title_full_unstemmed RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response
title_short RhoA Activation Sensitizes Cells to Proteotoxic Stimuli by Abrogating the HSF1-Dependent Heat Shock Response
title_sort rhoa activation sensitizes cells to proteotoxic stimuli by abrogating the hsf1-dependent heat shock response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4508109/
https://www.ncbi.nlm.nih.gov/pubmed/26193369
http://dx.doi.org/10.1371/journal.pone.0133553
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