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Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response

Recent interest has focused on the importance of the nucleus and associated nucleoskeleton in regulating changes in cardiac gene expression in response to biomechanical load. Mutations in genes encoding proteins of the inner nuclear membrane and nucleoskeleton, which cause cardiomyopathy, also disru...

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Autores principales: Banerjee, Indroneal, Zhang, Jianlin, Moore-Morris, Thomas, Pfeiffer, Emily, Buchholz, Kyle S., Liu, Ao, Ouyang, Kunfu, Stroud, Matthew J., Gerace, Larry, Evans, Sylvia M., McCulloch, Andrew, Chen, Ju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3930490/
https://www.ncbi.nlm.nih.gov/pubmed/24586179
http://dx.doi.org/10.1371/journal.pgen.1004114
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author Banerjee, Indroneal
Zhang, Jianlin
Moore-Morris, Thomas
Pfeiffer, Emily
Buchholz, Kyle S.
Liu, Ao
Ouyang, Kunfu
Stroud, Matthew J.
Gerace, Larry
Evans, Sylvia M.
McCulloch, Andrew
Chen, Ju
author_facet Banerjee, Indroneal
Zhang, Jianlin
Moore-Morris, Thomas
Pfeiffer, Emily
Buchholz, Kyle S.
Liu, Ao
Ouyang, Kunfu
Stroud, Matthew J.
Gerace, Larry
Evans, Sylvia M.
McCulloch, Andrew
Chen, Ju
author_sort Banerjee, Indroneal
collection PubMed
description Recent interest has focused on the importance of the nucleus and associated nucleoskeleton in regulating changes in cardiac gene expression in response to biomechanical load. Mutations in genes encoding proteins of the inner nuclear membrane and nucleoskeleton, which cause cardiomyopathy, also disrupt expression of a biomechanically responsive gene program. Furthermore, mutations in the outer nuclear membrane protein Nesprin 1 and 2 have been implicated in cardiomyopathy. Here, we identify for the first time a role for the outer nuclear membrane proteins, Nesprin 1 and Nesprin 2, in regulating gene expression in response to biomechanical load. Ablation of both Nesprin 1 and 2 in cardiomyocytes, but neither alone, resulted in early onset cardiomyopathy. Mutant cardiomyocytes exhibited altered nuclear positioning, shape, and chromatin positioning. Loss of Nesprin 1 or 2, or both, led to impairment of gene expression changes in response to biomechanical stimuli. These data suggest a model whereby biomechanical signals are communicated from proteins of the outer nuclear membrane, to the inner nuclear membrane and nucleoskeleton, to result in changes in gene expression required for adaptation of the cardiomyocyte to changes in biomechanical load, and give insights into etiologies underlying cardiomyopathy consequent to mutations in Nesprin 1 and 2.
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spelling pubmed-39304902014-02-25 Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response Banerjee, Indroneal Zhang, Jianlin Moore-Morris, Thomas Pfeiffer, Emily Buchholz, Kyle S. Liu, Ao Ouyang, Kunfu Stroud, Matthew J. Gerace, Larry Evans, Sylvia M. McCulloch, Andrew Chen, Ju PLoS Genet Research Article Recent interest has focused on the importance of the nucleus and associated nucleoskeleton in regulating changes in cardiac gene expression in response to biomechanical load. Mutations in genes encoding proteins of the inner nuclear membrane and nucleoskeleton, which cause cardiomyopathy, also disrupt expression of a biomechanically responsive gene program. Furthermore, mutations in the outer nuclear membrane protein Nesprin 1 and 2 have been implicated in cardiomyopathy. Here, we identify for the first time a role for the outer nuclear membrane proteins, Nesprin 1 and Nesprin 2, in regulating gene expression in response to biomechanical load. Ablation of both Nesprin 1 and 2 in cardiomyocytes, but neither alone, resulted in early onset cardiomyopathy. Mutant cardiomyocytes exhibited altered nuclear positioning, shape, and chromatin positioning. Loss of Nesprin 1 or 2, or both, led to impairment of gene expression changes in response to biomechanical stimuli. These data suggest a model whereby biomechanical signals are communicated from proteins of the outer nuclear membrane, to the inner nuclear membrane and nucleoskeleton, to result in changes in gene expression required for adaptation of the cardiomyocyte to changes in biomechanical load, and give insights into etiologies underlying cardiomyopathy consequent to mutations in Nesprin 1 and 2. Public Library of Science 2014-02-20 /pmc/articles/PMC3930490/ /pubmed/24586179 http://dx.doi.org/10.1371/journal.pgen.1004114 Text en © 2014 Banerjee 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
Banerjee, Indroneal
Zhang, Jianlin
Moore-Morris, Thomas
Pfeiffer, Emily
Buchholz, Kyle S.
Liu, Ao
Ouyang, Kunfu
Stroud, Matthew J.
Gerace, Larry
Evans, Sylvia M.
McCulloch, Andrew
Chen, Ju
Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response
title Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response
title_full Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response
title_fullStr Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response
title_full_unstemmed Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response
title_short Targeted Ablation of Nesprin 1 and Nesprin 2 from Murine Myocardium Results in Cardiomyopathy, Altered Nuclear Morphology and Inhibition of the Biomechanical Gene Response
title_sort targeted ablation of nesprin 1 and nesprin 2 from murine myocardium results in cardiomyopathy, altered nuclear morphology and inhibition of the biomechanical gene response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3930490/
https://www.ncbi.nlm.nih.gov/pubmed/24586179
http://dx.doi.org/10.1371/journal.pgen.1004114
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