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Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse

Lipid raft disruption is an early event during skeletal muscle unloading. Ceramide (Cer) serves as a signaling lipid that can contribute to lipid raft disturbance and muscle atrophy. Using biochemical and fluorescent approaches, the distribution of Cer and related molecules in the rat soleus muscle...

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Autores principales: Petrov, Alexey M., Shalagina, Maria N., Protopopov, Vladimir A., Sergeev, Valeriy G., Ovechkin, Sergey V., Ovchinina, Natalia G., Sekunov, Alexey V., Zefirov, Andrey L., Zakirjanova, Guzalia F., Bryndina, Irina G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6801848/
https://www.ncbi.nlm.nih.gov/pubmed/31574943
http://dx.doi.org/10.3390/ijms20194860
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author Petrov, Alexey M.
Shalagina, Maria N.
Protopopov, Vladimir A.
Sergeev, Valeriy G.
Ovechkin, Sergey V.
Ovchinina, Natalia G.
Sekunov, Alexey V.
Zefirov, Andrey L.
Zakirjanova, Guzalia F.
Bryndina, Irina G.
author_facet Petrov, Alexey M.
Shalagina, Maria N.
Protopopov, Vladimir A.
Sergeev, Valeriy G.
Ovechkin, Sergey V.
Ovchinina, Natalia G.
Sekunov, Alexey V.
Zefirov, Andrey L.
Zakirjanova, Guzalia F.
Bryndina, Irina G.
author_sort Petrov, Alexey M.
collection PubMed
description Lipid raft disruption is an early event during skeletal muscle unloading. Ceramide (Cer) serves as a signaling lipid that can contribute to lipid raft disturbance and muscle atrophy. Using biochemical and fluorescent approaches, the distribution of Cer and related molecules in the rat soleus muscle subjected to 12 h of hindlimb suspension (HS) was studied. HS led to upregulation of TNFα receptor 1 (TNFR1), Cer-producing enzymes, and acid and neutral sphingomyelinase (SMase) in detergent-resistant membranes (lipid rafts), which was accompanied by an increase in Cer and a decrease in sphingomyelin in this membrane fraction. Fluorescent labeling indicated increased Cer in the sarcoplasm as well as the junctional (synaptic) and extrajunctional compartments of the suspended muscles. Also, a loss of membrane asymmetry (a hallmark of membrane disturbance) was induced by HS. Pretreatment with clomipramine, a functional inhibitor of acid SMase, counteracted HS-mediated changes in the Cer/sphingomyelin ratio and acid SMase abundance as well as suppressed Cer accumulation in the intracellular membranes of junctional and extrajunctional regions. However, the elevation of plasma membrane Cer and disturbance of the membrane asymmetry were suppressed only in the junctional compartment. We suggest that acute HS leads to TNFR1 and SMase upregulation in the lipid raft fraction and deposition of Cer throughout the sarcolemma and intracellularly. Clomipramine-mediated downregulation of acid SMase can suppress Cer accumulation in all compartments, excluding the extrajunctional plasma membrane.
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spelling pubmed-68018482019-10-31 Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse Petrov, Alexey M. Shalagina, Maria N. Protopopov, Vladimir A. Sergeev, Valeriy G. Ovechkin, Sergey V. Ovchinina, Natalia G. Sekunov, Alexey V. Zefirov, Andrey L. Zakirjanova, Guzalia F. Bryndina, Irina G. Int J Mol Sci Article Lipid raft disruption is an early event during skeletal muscle unloading. Ceramide (Cer) serves as a signaling lipid that can contribute to lipid raft disturbance and muscle atrophy. Using biochemical and fluorescent approaches, the distribution of Cer and related molecules in the rat soleus muscle subjected to 12 h of hindlimb suspension (HS) was studied. HS led to upregulation of TNFα receptor 1 (TNFR1), Cer-producing enzymes, and acid and neutral sphingomyelinase (SMase) in detergent-resistant membranes (lipid rafts), which was accompanied by an increase in Cer and a decrease in sphingomyelin in this membrane fraction. Fluorescent labeling indicated increased Cer in the sarcoplasm as well as the junctional (synaptic) and extrajunctional compartments of the suspended muscles. Also, a loss of membrane asymmetry (a hallmark of membrane disturbance) was induced by HS. Pretreatment with clomipramine, a functional inhibitor of acid SMase, counteracted HS-mediated changes in the Cer/sphingomyelin ratio and acid SMase abundance as well as suppressed Cer accumulation in the intracellular membranes of junctional and extrajunctional regions. However, the elevation of plasma membrane Cer and disturbance of the membrane asymmetry were suppressed only in the junctional compartment. We suggest that acute HS leads to TNFR1 and SMase upregulation in the lipid raft fraction and deposition of Cer throughout the sarcolemma and intracellularly. Clomipramine-mediated downregulation of acid SMase can suppress Cer accumulation in all compartments, excluding the extrajunctional plasma membrane. MDPI 2019-09-30 /pmc/articles/PMC6801848/ /pubmed/31574943 http://dx.doi.org/10.3390/ijms20194860 Text en © 2019 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
Petrov, Alexey M.
Shalagina, Maria N.
Protopopov, Vladimir A.
Sergeev, Valeriy G.
Ovechkin, Sergey V.
Ovchinina, Natalia G.
Sekunov, Alexey V.
Zefirov, Andrey L.
Zakirjanova, Guzalia F.
Bryndina, Irina G.
Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse
title Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse
title_full Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse
title_fullStr Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse
title_full_unstemmed Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse
title_short Changes in Membrane Ceramide Pools in Rat Soleus Muscle in Response to Short-Term Disuse
title_sort changes in membrane ceramide pools in rat soleus muscle in response to short-term disuse
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6801848/
https://www.ncbi.nlm.nih.gov/pubmed/31574943
http://dx.doi.org/10.3390/ijms20194860
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