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Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury

The progressive deterioration of the neuromuscular axis is typically observed in degenerative conditions of the lower motor neurons, such as amyotrophic lateral sclerosis (ALS). Neurodegeneration in this disease is associated with systemic metabolic perturbations, including hypermetabolism and dysli...

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Autores principales: Hussain, Ghulam, Schmitt, Florent, Henriques, Alexandre, Lequeu, Thiebault, Rene, Frederique, Bindler, Françoise, Dirrig-Grosch, Sylvie, Oudart, Hugues, Palamiuc, Lavinia, Metz-Boutigue, Marie-Helene, Dupuis, Luc, Marchioni, Eric, Gonzalez De Aguilar, Jose-Luis, Loeffler, Jean-Philippe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3681796/
https://www.ncbi.nlm.nih.gov/pubmed/23785402
http://dx.doi.org/10.1371/journal.pone.0064525
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author Hussain, Ghulam
Schmitt, Florent
Henriques, Alexandre
Lequeu, Thiebault
Rene, Frederique
Bindler, Françoise
Dirrig-Grosch, Sylvie
Oudart, Hugues
Palamiuc, Lavinia
Metz-Boutigue, Marie-Helene
Dupuis, Luc
Marchioni, Eric
Gonzalez De Aguilar, Jose-Luis
Loeffler, Jean-Philippe
author_facet Hussain, Ghulam
Schmitt, Florent
Henriques, Alexandre
Lequeu, Thiebault
Rene, Frederique
Bindler, Françoise
Dirrig-Grosch, Sylvie
Oudart, Hugues
Palamiuc, Lavinia
Metz-Boutigue, Marie-Helene
Dupuis, Luc
Marchioni, Eric
Gonzalez De Aguilar, Jose-Luis
Loeffler, Jean-Philippe
author_sort Hussain, Ghulam
collection PubMed
description The progressive deterioration of the neuromuscular axis is typically observed in degenerative conditions of the lower motor neurons, such as amyotrophic lateral sclerosis (ALS). Neurodegeneration in this disease is associated with systemic metabolic perturbations, including hypermetabolism and dyslipidemia. Our previous gene profiling studies on ALS muscle revealed down-regulation of delta-9 desaturase, or SCD1, which is the rate-limiting enzyme in the synthesis of monounsaturated fatty acids. Interestingly, knocking out SCD1 gene is known to induce hypermetabolism and stimulate fatty acid beta-oxidation. Here we investigated whether SCD1 deficiency can affect muscle function and its restoration in response to injury. The genetic ablation of SCD1 was not detrimental per se to muscle function. On the contrary, muscles in SCD1 knockout mice shifted toward a more oxidative metabolism, and enhanced the expression of synaptic genes. Repressing SCD1 expression or reducing SCD-dependent enzymatic activity accelerated the recovery of muscle function after inducing sciatic nerve crush. Overall, these findings provide evidence for a new role of SCD1 in modulating the restorative potential of skeletal muscles.
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spelling pubmed-36817962013-06-19 Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury Hussain, Ghulam Schmitt, Florent Henriques, Alexandre Lequeu, Thiebault Rene, Frederique Bindler, Françoise Dirrig-Grosch, Sylvie Oudart, Hugues Palamiuc, Lavinia Metz-Boutigue, Marie-Helene Dupuis, Luc Marchioni, Eric Gonzalez De Aguilar, Jose-Luis Loeffler, Jean-Philippe PLoS One Research Article The progressive deterioration of the neuromuscular axis is typically observed in degenerative conditions of the lower motor neurons, such as amyotrophic lateral sclerosis (ALS). Neurodegeneration in this disease is associated with systemic metabolic perturbations, including hypermetabolism and dyslipidemia. Our previous gene profiling studies on ALS muscle revealed down-regulation of delta-9 desaturase, or SCD1, which is the rate-limiting enzyme in the synthesis of monounsaturated fatty acids. Interestingly, knocking out SCD1 gene is known to induce hypermetabolism and stimulate fatty acid beta-oxidation. Here we investigated whether SCD1 deficiency can affect muscle function and its restoration in response to injury. The genetic ablation of SCD1 was not detrimental per se to muscle function. On the contrary, muscles in SCD1 knockout mice shifted toward a more oxidative metabolism, and enhanced the expression of synaptic genes. Repressing SCD1 expression or reducing SCD-dependent enzymatic activity accelerated the recovery of muscle function after inducing sciatic nerve crush. Overall, these findings provide evidence for a new role of SCD1 in modulating the restorative potential of skeletal muscles. Public Library of Science 2013-06-13 /pmc/articles/PMC3681796/ /pubmed/23785402 http://dx.doi.org/10.1371/journal.pone.0064525 Text en © 2013 Hussain 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
Hussain, Ghulam
Schmitt, Florent
Henriques, Alexandre
Lequeu, Thiebault
Rene, Frederique
Bindler, Françoise
Dirrig-Grosch, Sylvie
Oudart, Hugues
Palamiuc, Lavinia
Metz-Boutigue, Marie-Helene
Dupuis, Luc
Marchioni, Eric
Gonzalez De Aguilar, Jose-Luis
Loeffler, Jean-Philippe
Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury
title Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury
title_full Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury
title_fullStr Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury
title_full_unstemmed Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury
title_short Systemic Down-Regulation of Delta-9 Desaturase Promotes Muscle Oxidative Metabolism and Accelerates Muscle Function Recovery following Nerve Injury
title_sort systemic down-regulation of delta-9 desaturase promotes muscle oxidative metabolism and accelerates muscle function recovery following nerve injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3681796/
https://www.ncbi.nlm.nih.gov/pubmed/23785402
http://dx.doi.org/10.1371/journal.pone.0064525
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