Cargando…

The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles

Even though abundance of Hsp27 is the highest in skeletal muscle, the relationships between the expression of HspB1 (encoding Hsp27) and muscle characteristics are not fully understood. In this study, we have analysed the effect of Hsp27 inactivation on mouse development and phenotype. We generated...

Descripción completa

Detalles Bibliográficos
Autores principales: Kammoun, Malek, Picard, Brigitte, Astruc, Thierry, Gagaoua, Mohammed, Aubert, Denise, Bonnet, Muriel, Blanquet, Véronique, Cassar-Malek, Isabelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4981447/
https://www.ncbi.nlm.nih.gov/pubmed/27512988
http://dx.doi.org/10.1371/journal.pone.0158644
_version_ 1782447618352218112
author Kammoun, Malek
Picard, Brigitte
Astruc, Thierry
Gagaoua, Mohammed
Aubert, Denise
Bonnet, Muriel
Blanquet, Véronique
Cassar-Malek, Isabelle
author_facet Kammoun, Malek
Picard, Brigitte
Astruc, Thierry
Gagaoua, Mohammed
Aubert, Denise
Bonnet, Muriel
Blanquet, Véronique
Cassar-Malek, Isabelle
author_sort Kammoun, Malek
collection PubMed
description Even though abundance of Hsp27 is the highest in skeletal muscle, the relationships between the expression of HspB1 (encoding Hsp27) and muscle characteristics are not fully understood. In this study, we have analysed the effect of Hsp27 inactivation on mouse development and phenotype. We generated a mouse strain devoid of Hsp27 protein by homologous recombination of the HspB1 gene. The HspB1(-/-) mouse was viable and fertile, showing neither apparent morphological nor anatomical alterations. We detected a gender dimorphism with marked effects in males, a lower body weight (P < 0.05) with no obvious changes in the growth rate, and a lower plasma lipids profile (cholesterol, HDL and triglycerides, 0.001 < P< 0.05). The muscle structure of the animals was examined by optical microscopy and transmission electron microscopy. Not any differences in the characteristics of muscle fibres (contractile and metabolic type, shape, perimeter, cross-sectional area) were detected except a trend for a higher proportion of small fibres. Different myosin heavy chains electrophoretic profiles were observed in the HspB1(-/-) mouse especially the presence of an additional isoform. Electron microscopy revealed ultrastructural abnormalities in the myofibrillar structure of the HspB1(-/-) mouse mutant mice (e.g. destructured myofibrils and higher gaps between myofibrils) especially in the m. Soleus. Combined with our previous data, these findings suggest that Hsp27 could directly impact the organization of muscle cytoskeleton at the molecular and ultrastructural levels.
format Online
Article
Text
id pubmed-4981447
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-49814472016-08-29 The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles Kammoun, Malek Picard, Brigitte Astruc, Thierry Gagaoua, Mohammed Aubert, Denise Bonnet, Muriel Blanquet, Véronique Cassar-Malek, Isabelle PLoS One Research Article Even though abundance of Hsp27 is the highest in skeletal muscle, the relationships between the expression of HspB1 (encoding Hsp27) and muscle characteristics are not fully understood. In this study, we have analysed the effect of Hsp27 inactivation on mouse development and phenotype. We generated a mouse strain devoid of Hsp27 protein by homologous recombination of the HspB1 gene. The HspB1(-/-) mouse was viable and fertile, showing neither apparent morphological nor anatomical alterations. We detected a gender dimorphism with marked effects in males, a lower body weight (P < 0.05) with no obvious changes in the growth rate, and a lower plasma lipids profile (cholesterol, HDL and triglycerides, 0.001 < P< 0.05). The muscle structure of the animals was examined by optical microscopy and transmission electron microscopy. Not any differences in the characteristics of muscle fibres (contractile and metabolic type, shape, perimeter, cross-sectional area) were detected except a trend for a higher proportion of small fibres. Different myosin heavy chains electrophoretic profiles were observed in the HspB1(-/-) mouse especially the presence of an additional isoform. Electron microscopy revealed ultrastructural abnormalities in the myofibrillar structure of the HspB1(-/-) mouse mutant mice (e.g. destructured myofibrils and higher gaps between myofibrils) especially in the m. Soleus. Combined with our previous data, these findings suggest that Hsp27 could directly impact the organization of muscle cytoskeleton at the molecular and ultrastructural levels. Public Library of Science 2016-08-11 /pmc/articles/PMC4981447/ /pubmed/27512988 http://dx.doi.org/10.1371/journal.pone.0158644 Text en © 2016 Kammoun 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kammoun, Malek
Picard, Brigitte
Astruc, Thierry
Gagaoua, Mohammed
Aubert, Denise
Bonnet, Muriel
Blanquet, Véronique
Cassar-Malek, Isabelle
The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles
title The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles
title_full The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles
title_fullStr The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles
title_full_unstemmed The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles
title_short The Invalidation of HspB1 Gene in Mouse Alters the Ultrastructural Phenotype of Muscles
title_sort invalidation of hspb1 gene in mouse alters the ultrastructural phenotype of muscles
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4981447/
https://www.ncbi.nlm.nih.gov/pubmed/27512988
http://dx.doi.org/10.1371/journal.pone.0158644
work_keys_str_mv AT kammounmalek theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT picardbrigitte theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT astructhierry theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT gagaouamohammed theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT aubertdenise theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT bonnetmuriel theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT blanquetveronique theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT cassarmalekisabelle theinvalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT kammounmalek invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT picardbrigitte invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT astructhierry invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT gagaouamohammed invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT aubertdenise invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT bonnetmuriel invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT blanquetveronique invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles
AT cassarmalekisabelle invalidationofhspb1geneinmousealterstheultrastructuralphenotypeofmuscles