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Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle

AIMS: Sphingolipid and oxidant signaling affect glucose uptake, atrophy, and force production of skeletal muscle similarly and both are stimulated by tumor necrosis factor (TNF), suggesting a connection between systems. Sphingolipid signaling is initiated by neutral sphingomyelinase (nSMase), a fami...

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Autores principales: Moylan, Jennifer S., Smith, Jeffrey D., Wolf Horrell, Erin M., McLean, Julie B., Deevska, Gergana M., Bonnell, Mark R., Nikolova-Karakashian, Mariana N., Reid, Michael B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4143815/
https://www.ncbi.nlm.nih.gov/pubmed/25180167
http://dx.doi.org/10.1016/j.redox.2014.07.006
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author Moylan, Jennifer S.
Smith, Jeffrey D.
Wolf Horrell, Erin M.
McLean, Julie B.
Deevska, Gergana M.
Bonnell, Mark R.
Nikolova-Karakashian, Mariana N.
Reid, Michael B.
author_facet Moylan, Jennifer S.
Smith, Jeffrey D.
Wolf Horrell, Erin M.
McLean, Julie B.
Deevska, Gergana M.
Bonnell, Mark R.
Nikolova-Karakashian, Mariana N.
Reid, Michael B.
author_sort Moylan, Jennifer S.
collection PubMed
description AIMS: Sphingolipid and oxidant signaling affect glucose uptake, atrophy, and force production of skeletal muscle similarly and both are stimulated by tumor necrosis factor (TNF), suggesting a connection between systems. Sphingolipid signaling is initiated by neutral sphingomyelinase (nSMase), a family of agonist-activated effector enzymes. Northern blot analyses suggest that nSMase3 may be a striated muscle-specific nSMase. The present study tested the hypothesis that nSMase3 protein is expressed in skeletal muscle and functions to regulate TNF-stimulated oxidant production. RESULTS: We demonstrate constitutive nSMase activity in skeletal muscles of healthy mice and humans and in differentiated C2C12 myotubes. nSMase3 (Smpd4 gene) mRNA is highly expressed in muscle. An nSMase3 protein doublet (88 and 85 kD) is derived from alternative mRNA splicing of exon 11. The proteins partition differently. The full-length 88 kD isoform (nSMase3a) fractionates with membrane proteins that are resistant to detergent extraction; the 85 kD isoform lacking exon 11 (nSMase3b) is more readily extracted and fractionates with detergent soluble membrane proteins; neither variant is detected in the cytosol. By immunofluorescence microscopy, nSMase3 resides in both internal and sarcolemmal membranes. Finally, myotube nSMase activity and cytosolic oxidant activity are stimulated by TNF. Both if these responses are inhibited by nSMase3 knockdown. INNOVATION: These findings identify nSMase3 as an intermediate that links TNF receptor activation, sphingolipid signaling, and skeletal muscle oxidant production. CONCLUSION: Our data show that nSMase3 acts as a signaling nSMase in skeletal muscle that is essential for TNF-stimulated oxidant activity.
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spelling pubmed-41438152014-09-01 Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle Moylan, Jennifer S. Smith, Jeffrey D. Wolf Horrell, Erin M. McLean, Julie B. Deevska, Gergana M. Bonnell, Mark R. Nikolova-Karakashian, Mariana N. Reid, Michael B. Redox Biol Research Paper AIMS: Sphingolipid and oxidant signaling affect glucose uptake, atrophy, and force production of skeletal muscle similarly and both are stimulated by tumor necrosis factor (TNF), suggesting a connection between systems. Sphingolipid signaling is initiated by neutral sphingomyelinase (nSMase), a family of agonist-activated effector enzymes. Northern blot analyses suggest that nSMase3 may be a striated muscle-specific nSMase. The present study tested the hypothesis that nSMase3 protein is expressed in skeletal muscle and functions to regulate TNF-stimulated oxidant production. RESULTS: We demonstrate constitutive nSMase activity in skeletal muscles of healthy mice and humans and in differentiated C2C12 myotubes. nSMase3 (Smpd4 gene) mRNA is highly expressed in muscle. An nSMase3 protein doublet (88 and 85 kD) is derived from alternative mRNA splicing of exon 11. The proteins partition differently. The full-length 88 kD isoform (nSMase3a) fractionates with membrane proteins that are resistant to detergent extraction; the 85 kD isoform lacking exon 11 (nSMase3b) is more readily extracted and fractionates with detergent soluble membrane proteins; neither variant is detected in the cytosol. By immunofluorescence microscopy, nSMase3 resides in both internal and sarcolemmal membranes. Finally, myotube nSMase activity and cytosolic oxidant activity are stimulated by TNF. Both if these responses are inhibited by nSMase3 knockdown. INNOVATION: These findings identify nSMase3 as an intermediate that links TNF receptor activation, sphingolipid signaling, and skeletal muscle oxidant production. CONCLUSION: Our data show that nSMase3 acts as a signaling nSMase in skeletal muscle that is essential for TNF-stimulated oxidant activity. Elsevier 2014-07-30 /pmc/articles/PMC4143815/ /pubmed/25180167 http://dx.doi.org/10.1016/j.redox.2014.07.006 Text en http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Research Paper
Moylan, Jennifer S.
Smith, Jeffrey D.
Wolf Horrell, Erin M.
McLean, Julie B.
Deevska, Gergana M.
Bonnell, Mark R.
Nikolova-Karakashian, Mariana N.
Reid, Michael B.
Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle
title Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle
title_full Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle
title_fullStr Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle
title_full_unstemmed Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle
title_short Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle
title_sort neutral sphingomyelinase-3 mediates tnf-stimulated oxidant activity in skeletal muscle
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4143815/
https://www.ncbi.nlm.nih.gov/pubmed/25180167
http://dx.doi.org/10.1016/j.redox.2014.07.006
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