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Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy

Skeletal muscle atrophy is a common and debilitating condition that lacks an effective therapy. To address this problem, we used a systems-based discovery strategy to search for a small molecule whose mRNA expression signature negatively correlates to mRNA expression signatures of human skeletal mus...

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Autores principales: Dyle, Michael C., Ebert, Scott M., Cook, Daniel P., Kunkel, Steven D., Fox, Daniel K., Bongers, Kale S., Bullard, Steven A., Dierdorff, Jason M., Adams, Christopher M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4031541/
https://www.ncbi.nlm.nih.gov/pubmed/24719321
http://dx.doi.org/10.1074/jbc.M114.556241
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author Dyle, Michael C.
Ebert, Scott M.
Cook, Daniel P.
Kunkel, Steven D.
Fox, Daniel K.
Bongers, Kale S.
Bullard, Steven A.
Dierdorff, Jason M.
Adams, Christopher M.
author_facet Dyle, Michael C.
Ebert, Scott M.
Cook, Daniel P.
Kunkel, Steven D.
Fox, Daniel K.
Bongers, Kale S.
Bullard, Steven A.
Dierdorff, Jason M.
Adams, Christopher M.
author_sort Dyle, Michael C.
collection PubMed
description Skeletal muscle atrophy is a common and debilitating condition that lacks an effective therapy. To address this problem, we used a systems-based discovery strategy to search for a small molecule whose mRNA expression signature negatively correlates to mRNA expression signatures of human skeletal muscle atrophy. This strategy identified a natural small molecule from tomato plants, tomatidine. Using cultured skeletal myotubes from both humans and mice, we found that tomatidine stimulated mTORC1 signaling and anabolism, leading to accumulation of protein and mitochondria, and ultimately, cell growth. Furthermore, in mice, tomatidine increased skeletal muscle mTORC1 signaling, reduced skeletal muscle atrophy, enhanced recovery from skeletal muscle atrophy, stimulated skeletal muscle hypertrophy, and increased strength and exercise capacity. Collectively, these results identify tomatidine as a novel small molecule inhibitor of muscle atrophy. Tomatidine may have utility as a therapeutic agent or lead compound for skeletal muscle atrophy.
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spelling pubmed-40315412014-05-29 Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy Dyle, Michael C. Ebert, Scott M. Cook, Daniel P. Kunkel, Steven D. Fox, Daniel K. Bongers, Kale S. Bullard, Steven A. Dierdorff, Jason M. Adams, Christopher M. J Biol Chem Metabolism Skeletal muscle atrophy is a common and debilitating condition that lacks an effective therapy. To address this problem, we used a systems-based discovery strategy to search for a small molecule whose mRNA expression signature negatively correlates to mRNA expression signatures of human skeletal muscle atrophy. This strategy identified a natural small molecule from tomato plants, tomatidine. Using cultured skeletal myotubes from both humans and mice, we found that tomatidine stimulated mTORC1 signaling and anabolism, leading to accumulation of protein and mitochondria, and ultimately, cell growth. Furthermore, in mice, tomatidine increased skeletal muscle mTORC1 signaling, reduced skeletal muscle atrophy, enhanced recovery from skeletal muscle atrophy, stimulated skeletal muscle hypertrophy, and increased strength and exercise capacity. Collectively, these results identify tomatidine as a novel small molecule inhibitor of muscle atrophy. Tomatidine may have utility as a therapeutic agent or lead compound for skeletal muscle atrophy. American Society for Biochemistry and Molecular Biology 2014-05-23 2014-04-09 /pmc/articles/PMC4031541/ /pubmed/24719321 http://dx.doi.org/10.1074/jbc.M114.556241 Text en © 2014 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Metabolism
Dyle, Michael C.
Ebert, Scott M.
Cook, Daniel P.
Kunkel, Steven D.
Fox, Daniel K.
Bongers, Kale S.
Bullard, Steven A.
Dierdorff, Jason M.
Adams, Christopher M.
Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy
title Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy
title_full Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy
title_fullStr Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy
title_full_unstemmed Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy
title_short Systems-based Discovery of Tomatidine as a Natural Small Molecule Inhibitor of Skeletal Muscle Atrophy
title_sort systems-based discovery of tomatidine as a natural small molecule inhibitor of skeletal muscle atrophy
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4031541/
https://www.ncbi.nlm.nih.gov/pubmed/24719321
http://dx.doi.org/10.1074/jbc.M114.556241
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