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Lem2 is essential for cardiac development by maintaining nuclear integrity

AIMS: Nuclear envelope integrity is essential for the compartmentalization of the nucleus and cytoplasm. Importantly, mutations in genes encoding nuclear envelope (NE) and associated proteins are the second highest cause of familial dilated cardiomyopathy. One such NE protein that causes cardiomyopa...

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Autores principales: Ross, Jacob A, Arcos-Villacis, Nathaly, Battey, Edmund, Boogerd, Cornelis, Orellana, Constanza Avalos, Marhuenda, Emilie, Swiatlowska, Pamela, Hodzic, Didier, Prin, Fabrice, Mohun, Tim, Catibog, Norman, Tapia, Olga, Gerace, Larry, Iskratsch, Thomas, Shah, Ajay M, Stroud, Matthew J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10478753/
https://www.ncbi.nlm.nih.gov/pubmed/37067297
http://dx.doi.org/10.1093/cvr/cvad061
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author Ross, Jacob A
Arcos-Villacis, Nathaly
Battey, Edmund
Boogerd, Cornelis
Orellana, Constanza Avalos
Marhuenda, Emilie
Swiatlowska, Pamela
Hodzic, Didier
Prin, Fabrice
Mohun, Tim
Catibog, Norman
Tapia, Olga
Gerace, Larry
Iskratsch, Thomas
Shah, Ajay M
Stroud, Matthew J
author_facet Ross, Jacob A
Arcos-Villacis, Nathaly
Battey, Edmund
Boogerd, Cornelis
Orellana, Constanza Avalos
Marhuenda, Emilie
Swiatlowska, Pamela
Hodzic, Didier
Prin, Fabrice
Mohun, Tim
Catibog, Norman
Tapia, Olga
Gerace, Larry
Iskratsch, Thomas
Shah, Ajay M
Stroud, Matthew J
author_sort Ross, Jacob A
collection PubMed
description AIMS: Nuclear envelope integrity is essential for the compartmentalization of the nucleus and cytoplasm. Importantly, mutations in genes encoding nuclear envelope (NE) and associated proteins are the second highest cause of familial dilated cardiomyopathy. One such NE protein that causes cardiomyopathy in humans and affects mouse heart development is Lem2. However, its role in the heart remains poorly understood. METHODS AND RESULTS: We generated mice in which Lem2 was specifically ablated either in embryonic cardiomyocytes (Lem2 cKO) or in adult cardiomyocytes (Lem2 iCKO) and carried out detailed physiological, tissue, and cellular analyses. High-resolution episcopic microscopy was used for three-dimensional reconstructions and detailed morphological analyses. RNA-sequencing and immunofluorescence identified altered pathways and cellular phenotypes, and cardiomyocytes were isolated to interrogate nuclear integrity in more detail. In addition, echocardiography provided a physiological assessment of Lem2 iCKO adult mice. We found that Lem2 was essential for cardiac development, and hearts from Lem2 cKO mice were morphologically and transcriptionally underdeveloped. Lem2 cKO hearts displayed high levels of DNA damage, nuclear rupture, and apoptosis. Crucially, we found that these defects were driven by muscle contraction as they were ameliorated by inhibiting myosin contraction and L-type calcium channels. Conversely, reducing Lem2 levels to ∼45% in adult cardiomyocytes did not lead to overt cardiac dysfunction up to 18 months of age. CONCLUSIONS: Our data suggest that Lem2 is critical for integrity at the nascent NE in foetal hearts, and protects the nucleus from the mechanical forces of muscle contraction. In contrast, the adult heart is not detectably affected by partial Lem2 depletion, perhaps owing to a more established NE and increased adaptation to mechanical stress. Taken together, these data provide insights into mechanisms underlying cardiomyopathy in patients with mutations in Lem2 and cardio-laminopathies in general.
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spelling pubmed-104787532023-09-06 Lem2 is essential for cardiac development by maintaining nuclear integrity Ross, Jacob A Arcos-Villacis, Nathaly Battey, Edmund Boogerd, Cornelis Orellana, Constanza Avalos Marhuenda, Emilie Swiatlowska, Pamela Hodzic, Didier Prin, Fabrice Mohun, Tim Catibog, Norman Tapia, Olga Gerace, Larry Iskratsch, Thomas Shah, Ajay M Stroud, Matthew J Cardiovasc Res Original Article AIMS: Nuclear envelope integrity is essential for the compartmentalization of the nucleus and cytoplasm. Importantly, mutations in genes encoding nuclear envelope (NE) and associated proteins are the second highest cause of familial dilated cardiomyopathy. One such NE protein that causes cardiomyopathy in humans and affects mouse heart development is Lem2. However, its role in the heart remains poorly understood. METHODS AND RESULTS: We generated mice in which Lem2 was specifically ablated either in embryonic cardiomyocytes (Lem2 cKO) or in adult cardiomyocytes (Lem2 iCKO) and carried out detailed physiological, tissue, and cellular analyses. High-resolution episcopic microscopy was used for three-dimensional reconstructions and detailed morphological analyses. RNA-sequencing and immunofluorescence identified altered pathways and cellular phenotypes, and cardiomyocytes were isolated to interrogate nuclear integrity in more detail. In addition, echocardiography provided a physiological assessment of Lem2 iCKO adult mice. We found that Lem2 was essential for cardiac development, and hearts from Lem2 cKO mice were morphologically and transcriptionally underdeveloped. Lem2 cKO hearts displayed high levels of DNA damage, nuclear rupture, and apoptosis. Crucially, we found that these defects were driven by muscle contraction as they were ameliorated by inhibiting myosin contraction and L-type calcium channels. Conversely, reducing Lem2 levels to ∼45% in adult cardiomyocytes did not lead to overt cardiac dysfunction up to 18 months of age. CONCLUSIONS: Our data suggest that Lem2 is critical for integrity at the nascent NE in foetal hearts, and protects the nucleus from the mechanical forces of muscle contraction. In contrast, the adult heart is not detectably affected by partial Lem2 depletion, perhaps owing to a more established NE and increased adaptation to mechanical stress. Taken together, these data provide insights into mechanisms underlying cardiomyopathy in patients with mutations in Lem2 and cardio-laminopathies in general. Oxford University Press 2023-04-17 /pmc/articles/PMC10478753/ /pubmed/37067297 http://dx.doi.org/10.1093/cvr/cvad061 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the European Society of Cardiology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Ross, Jacob A
Arcos-Villacis, Nathaly
Battey, Edmund
Boogerd, Cornelis
Orellana, Constanza Avalos
Marhuenda, Emilie
Swiatlowska, Pamela
Hodzic, Didier
Prin, Fabrice
Mohun, Tim
Catibog, Norman
Tapia, Olga
Gerace, Larry
Iskratsch, Thomas
Shah, Ajay M
Stroud, Matthew J
Lem2 is essential for cardiac development by maintaining nuclear integrity
title Lem2 is essential for cardiac development by maintaining nuclear integrity
title_full Lem2 is essential for cardiac development by maintaining nuclear integrity
title_fullStr Lem2 is essential for cardiac development by maintaining nuclear integrity
title_full_unstemmed Lem2 is essential for cardiac development by maintaining nuclear integrity
title_short Lem2 is essential for cardiac development by maintaining nuclear integrity
title_sort lem2 is essential for cardiac development by maintaining nuclear integrity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10478753/
https://www.ncbi.nlm.nih.gov/pubmed/37067297
http://dx.doi.org/10.1093/cvr/cvad061
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