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The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina

Oligodendrocytes are specialized cells that insulate and support axons with their myelin membrane, allowing proper brain function. Here, we identify lamin A/C (LMNA/C) as essential for transcriptional and functional stability of myelinating oligodendrocytes. We show that LMNA/C levels increase with...

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Autores principales: Pruvost, Mathilde, Patzig, Julia, Yattah, Camila, Selcen, Ipek, Hernandez, Marylens, Park, Hye-Jin, Moyon, Sarah, Liu, Shibo, Morioka, Malia S., Shopland, Lindsay, Al-Dalahmah, Osama, Bendl, Jaroslav, Fullard, John F., Roussos, Panos, Goldman, James, He, Ye, Dupree, Jeffrey L., Casaccia, Patrizia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10600948/
https://www.ncbi.nlm.nih.gov/pubmed/37515770
http://dx.doi.org/10.1016/j.celrep.2023.112848
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author Pruvost, Mathilde
Patzig, Julia
Yattah, Camila
Selcen, Ipek
Hernandez, Marylens
Park, Hye-Jin
Moyon, Sarah
Liu, Shibo
Morioka, Malia S.
Shopland, Lindsay
Al-Dalahmah, Osama
Bendl, Jaroslav
Fullard, John F.
Roussos, Panos
Goldman, James
He, Ye
Dupree, Jeffrey L.
Casaccia, Patrizia
author_facet Pruvost, Mathilde
Patzig, Julia
Yattah, Camila
Selcen, Ipek
Hernandez, Marylens
Park, Hye-Jin
Moyon, Sarah
Liu, Shibo
Morioka, Malia S.
Shopland, Lindsay
Al-Dalahmah, Osama
Bendl, Jaroslav
Fullard, John F.
Roussos, Panos
Goldman, James
He, Ye
Dupree, Jeffrey L.
Casaccia, Patrizia
author_sort Pruvost, Mathilde
collection PubMed
description Oligodendrocytes are specialized cells that insulate and support axons with their myelin membrane, allowing proper brain function. Here, we identify lamin A/C (LMNA/C) as essential for transcriptional and functional stability of myelinating oligodendrocytes. We show that LMNA/C levels increase with differentiation of progenitors and that loss of Lmna in differentiated oligodendrocytes profoundly alters their chromatin accessibility and transcriptional signature. Lmna deletion in myelinating glia is compatible with normal developmental myelination. However, altered chromatin accessibility is detected in fully differentiated oligodendrocytes together with increased expression of progenitor genes and decreased levels of lipid-related transcription factors and inner mitochondrial membrane transcripts. These changes are accompanied by altered brain metabolism, lower levels of myelin-related lipids, and altered mitochondrial structure in oligodendrocytes, thereby resulting in myelin thinning and the development of a progressively worsening motor phenotype. Overall, our data identify LMNA/C as essential for maintaining the transcriptional and functional stability of myelinating oligodendrocytes.
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spelling pubmed-106009482023-10-26 The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina Pruvost, Mathilde Patzig, Julia Yattah, Camila Selcen, Ipek Hernandez, Marylens Park, Hye-Jin Moyon, Sarah Liu, Shibo Morioka, Malia S. Shopland, Lindsay Al-Dalahmah, Osama Bendl, Jaroslav Fullard, John F. Roussos, Panos Goldman, James He, Ye Dupree, Jeffrey L. Casaccia, Patrizia Cell Rep Article Oligodendrocytes are specialized cells that insulate and support axons with their myelin membrane, allowing proper brain function. Here, we identify lamin A/C (LMNA/C) as essential for transcriptional and functional stability of myelinating oligodendrocytes. We show that LMNA/C levels increase with differentiation of progenitors and that loss of Lmna in differentiated oligodendrocytes profoundly alters their chromatin accessibility and transcriptional signature. Lmna deletion in myelinating glia is compatible with normal developmental myelination. However, altered chromatin accessibility is detected in fully differentiated oligodendrocytes together with increased expression of progenitor genes and decreased levels of lipid-related transcription factors and inner mitochondrial membrane transcripts. These changes are accompanied by altered brain metabolism, lower levels of myelin-related lipids, and altered mitochondrial structure in oligodendrocytes, thereby resulting in myelin thinning and the development of a progressively worsening motor phenotype. Overall, our data identify LMNA/C as essential for maintaining the transcriptional and functional stability of myelinating oligodendrocytes. 2023-08-29 2023-07-28 /pmc/articles/PMC10600948/ /pubmed/37515770 http://dx.doi.org/10.1016/j.celrep.2023.112848 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Pruvost, Mathilde
Patzig, Julia
Yattah, Camila
Selcen, Ipek
Hernandez, Marylens
Park, Hye-Jin
Moyon, Sarah
Liu, Shibo
Morioka, Malia S.
Shopland, Lindsay
Al-Dalahmah, Osama
Bendl, Jaroslav
Fullard, John F.
Roussos, Panos
Goldman, James
He, Ye
Dupree, Jeffrey L.
Casaccia, Patrizia
The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
title The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
title_full The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
title_fullStr The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
title_full_unstemmed The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
title_short The stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
title_sort stability of the myelinating oligodendrocyte transcriptome is regulated by the nuclear lamina
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10600948/
https://www.ncbi.nlm.nih.gov/pubmed/37515770
http://dx.doi.org/10.1016/j.celrep.2023.112848
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