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Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice

LONP1 is a nuclear-encoded mitochondrial protease crucial for organelle homeostasis; mutations of LONP1 have been associated with Cerebral, Ocular, Dental, Auricular, and Skeletal anomalies (CODAS) syndrome. To clarify the role of LONP1 in vivo, we generated a mouse model in which Lonp1 was ablated....

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Autores principales: De Gaetano, Anna, Gibellini, Lara, Bianchini, Elena, Borella, Rebecca, De Biasi, Sara, Nasi, Milena, Boraldi, Federica, Cossarizza, Andrea, Pinti, Marcello
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7355737/
https://www.ncbi.nlm.nih.gov/pubmed/32521756
http://dx.doi.org/10.3390/jcm9061783
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author De Gaetano, Anna
Gibellini, Lara
Bianchini, Elena
Borella, Rebecca
De Biasi, Sara
Nasi, Milena
Boraldi, Federica
Cossarizza, Andrea
Pinti, Marcello
author_facet De Gaetano, Anna
Gibellini, Lara
Bianchini, Elena
Borella, Rebecca
De Biasi, Sara
Nasi, Milena
Boraldi, Federica
Cossarizza, Andrea
Pinti, Marcello
author_sort De Gaetano, Anna
collection PubMed
description LONP1 is a nuclear-encoded mitochondrial protease crucial for organelle homeostasis; mutations of LONP1 have been associated with Cerebral, Ocular, Dental, Auricular, and Skeletal anomalies (CODAS) syndrome. To clarify the role of LONP1 in vivo, we generated a mouse model in which Lonp1 was ablated. The homozygous Lonp(−/−) mouse was not vital, while the heterozygous Lonp1(wt/−) showed similar growth rate, weight, length, life-span and histologic features as wild type. Conversely, ultrastructural analysis of heterozygous enterocytes evidenced profound morphological alterations of mitochondria, which appeared increased in number, swollen and larger, with a lower complexity. Embryonic fibroblasts (MEFs) from Lonp1(wt/−) mice showed a reduced expression of Lonp1 and Tfam, whose expression is regulated by LONP1. Mitochondrial DNA was also reduced, and mitochondria were swollen and larger, albeit at a lesser extent than enterocytes, with a perinuclear distribution. From the functional point of view, mitochondria from heterozygous MEF showed a lower oxygen consumption rate in basal conditions, either in the presence of glucose or galactose, and a reduced expression of mitochondrial complexes than wild type. In conclusion, the presence of one functional copy of the Lonp1 gene leads to impairment of mitochondrial ultrastructure and functions in vivo.
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spelling pubmed-73557372020-07-23 Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice De Gaetano, Anna Gibellini, Lara Bianchini, Elena Borella, Rebecca De Biasi, Sara Nasi, Milena Boraldi, Federica Cossarizza, Andrea Pinti, Marcello J Clin Med Article LONP1 is a nuclear-encoded mitochondrial protease crucial for organelle homeostasis; mutations of LONP1 have been associated with Cerebral, Ocular, Dental, Auricular, and Skeletal anomalies (CODAS) syndrome. To clarify the role of LONP1 in vivo, we generated a mouse model in which Lonp1 was ablated. The homozygous Lonp(−/−) mouse was not vital, while the heterozygous Lonp1(wt/−) showed similar growth rate, weight, length, life-span and histologic features as wild type. Conversely, ultrastructural analysis of heterozygous enterocytes evidenced profound morphological alterations of mitochondria, which appeared increased in number, swollen and larger, with a lower complexity. Embryonic fibroblasts (MEFs) from Lonp1(wt/−) mice showed a reduced expression of Lonp1 and Tfam, whose expression is regulated by LONP1. Mitochondrial DNA was also reduced, and mitochondria were swollen and larger, albeit at a lesser extent than enterocytes, with a perinuclear distribution. From the functional point of view, mitochondria from heterozygous MEF showed a lower oxygen consumption rate in basal conditions, either in the presence of glucose or galactose, and a reduced expression of mitochondrial complexes than wild type. In conclusion, the presence of one functional copy of the Lonp1 gene leads to impairment of mitochondrial ultrastructure and functions in vivo. MDPI 2020-06-08 /pmc/articles/PMC7355737/ /pubmed/32521756 http://dx.doi.org/10.3390/jcm9061783 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De Gaetano, Anna
Gibellini, Lara
Bianchini, Elena
Borella, Rebecca
De Biasi, Sara
Nasi, Milena
Boraldi, Federica
Cossarizza, Andrea
Pinti, Marcello
Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice
title Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice
title_full Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice
title_fullStr Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice
title_full_unstemmed Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice
title_short Impaired Mitochondrial Morphology and Functionality in Lonp1(wt/−) Mice
title_sort impaired mitochondrial morphology and functionality in lonp1(wt/−) mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7355737/
https://www.ncbi.nlm.nih.gov/pubmed/32521756
http://dx.doi.org/10.3390/jcm9061783
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