Literature DB >> 28274922

Membrane lipid rafts are disturbed in the response of rat skeletal muscle to short-term disuse.

Alexey M Petrov1, Violetta V Kravtsova2, Vladimir V Matchkov3, Alexander N Vasiliev2, Andrey L Zefirov1, Alexander V Chibalin4, Judith A Heiny5, Igor I Krivoi6.   

Abstract

Marked loss of skeletal muscle mass occurs under various conditions of disuse, but the molecular and cellular mechanisms leading to atrophy are not completely understood. We investigate early molecular events that might play a role in skeletal muscle remodeling during mechanical unloading (disuse). The effects of acute (6-12 h) hindlimb suspension on the soleus muscles from adult rats were examined. The integrity of plasma membrane lipid rafts was tested utilizing cholera toxin B subunit or fluorescent sterols. In addition, resting intracellular Ca2+ level was analyzed. Acute disuse disturbed the plasma membrane lipid-ordered phase throughout the sarcolemma and was more pronounced in junctional membrane regions. Ouabain (1 µM), which specifically inhibits the Na-K-ATPase α2 isozyme in rodent skeletal muscles, produced similar lipid raft changes in control muscles but was ineffective in suspended muscles, which showed an initial loss of α2 Na-K-ATPase activity. Lipid rafts were able to recover with cholesterol supplementation, suggesting that disturbance results from cholesterol loss. Repetitive nerve stimulation also restores lipid rafts, specifically in the junctional sarcolemma region. Disuse locally lowered the resting intracellular Ca2+ concentration only near the neuromuscular junction of muscle fibers. Our results provide evidence to suggest that the ordering of lipid rafts strongly depends on motor nerve input and may involve interactions with the α2 Na-K-ATPase. Lipid raft disturbance, accompanied by intracellular Ca2+ dysregulation, is among the earliest remodeling events induced by skeletal muscle disuse.
Copyright © 2017 the American Physiological Society.

Entities:  

Keywords:  cholesterol; hindlimb suspension; intracellular calcium; lipid rafts; skeletal muscle disuse

Mesh:

Substances:

Year:  2017        PMID: 28274922      PMCID: PMC5451522          DOI: 10.1152/ajpcell.00365.2016

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  62 in total

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Review 3.  Fluorescent indicators of ion concentrations.

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7.  Gangliosides that associate with lipid rafts mediate transport of cholera and related toxins from the plasma membrane to endoplasmic reticulm.

Authors:  Yukako Fujinaga; Anne A Wolf; Chiara Rodighiero; Heidi Wheeler; Billy Tsai; Larry Allen; Michael G Jobling; Tom Rapoport; Randall K Holmes; Wayne I Lencer
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Review 8.  Skeletal muscle wasting with disuse atrophy is multi-dimensional: the response and interaction of myonuclei, satellite cells and signaling pathways.

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  12 in total

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Review 5.  AMP-Activated Protein Kinase as a Key Trigger for the Disuse-Induced Skeletal Muscle Remodeling.

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

Authors:  Alexey M Petrov; Maria N Shalagina; Vladimir A Protopopov; Valeriy G Sergeev; Sergey V Ovechkin; Natalia G Ovchinina; Alexey V Sekunov; Andrey L Zefirov; Guzalia F Zakirjanova; Irina G Bryndina
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Review 7.  How Postural Muscle Senses Disuse? Early Signs and Signals.

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9.  Early Lipid Raft-Related Changes: Interplay between Unilateral Denervation and Hindlimb Suspension.

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