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mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism

Aging leads to skeletal muscle atrophy (i.e., sarcopenia), and muscle fiber loss is a critical component of this process. The mechanisms underlying these age‐related changes, however, remain unclear. We show here that mTORC1 signaling is activated in a subset of skeletal muscle fibers in aging mouse...

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Autores principales: Tang, Huibin, Inoki, Ken, Brooks, Susan V., Okazawa, Hideki, Lee, Myung, Wang, Junying, Kim, Michael, Kennedy, Catherine L., Macpherson, Peter C. D., Ji, Xuhuai, Van Roekel, Sabrina, Fraga, Danielle A., Wang, Kun, Zhu, Jinguo, Wang, Yoyo, Sharp, Zelton D., Miller, Richard A., Rando, Thomas A., Goldman, Daniel, Guan, Kun‐Liang, Shrager, Joseph B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6516169/
https://www.ncbi.nlm.nih.gov/pubmed/30924297
http://dx.doi.org/10.1111/acel.12943
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author Tang, Huibin
Inoki, Ken
Brooks, Susan V.
Okazawa, Hideki
Lee, Myung
Wang, Junying
Kim, Michael
Kennedy, Catherine L.
Macpherson, Peter C. D.
Ji, Xuhuai
Van Roekel, Sabrina
Fraga, Danielle A.
Wang, Kun
Zhu, Jinguo
Wang, Yoyo
Sharp, Zelton D.
Miller, Richard A.
Rando, Thomas A.
Goldman, Daniel
Guan, Kun‐Liang
Shrager, Joseph B.
author_facet Tang, Huibin
Inoki, Ken
Brooks, Susan V.
Okazawa, Hideki
Lee, Myung
Wang, Junying
Kim, Michael
Kennedy, Catherine L.
Macpherson, Peter C. D.
Ji, Xuhuai
Van Roekel, Sabrina
Fraga, Danielle A.
Wang, Kun
Zhu, Jinguo
Wang, Yoyo
Sharp, Zelton D.
Miller, Richard A.
Rando, Thomas A.
Goldman, Daniel
Guan, Kun‐Liang
Shrager, Joseph B.
author_sort Tang, Huibin
collection PubMed
description Aging leads to skeletal muscle atrophy (i.e., sarcopenia), and muscle fiber loss is a critical component of this process. The mechanisms underlying these age‐related changes, however, remain unclear. We show here that mTORC1 signaling is activated in a subset of skeletal muscle fibers in aging mouse and human, colocalized with fiber damage. Activation of mTORC1 in TSC1 knockout mouse muscle fibers increases the content of morphologically abnormal mitochondria and causes progressive oxidative stress, fiber damage, and fiber loss over the lifespan. Transcriptomic profiling reveals that mTORC1's activation increases the expression of growth differentiation factors (GDF3, 5, and 15), and of genes involved in mitochondrial oxidative stress and catabolism. We show that increased GDF15 is sufficient to induce oxidative stress and catabolic changes, and that mTORC1 increases the expression of GDF15 via phosphorylation of STAT3. Inhibition of mTORC1 in aging mouse decreases the expression of GDFs and STAT3's phosphorylation in skeletal muscle, reducing oxidative stress and muscle fiber damage and loss. Thus, chronically increased mTORC1 activity contributes to age‐related muscle atrophy, and GDF signaling is a proposed mechanism.
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spelling pubmed-65161692019-06-01 mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism Tang, Huibin Inoki, Ken Brooks, Susan V. Okazawa, Hideki Lee, Myung Wang, Junying Kim, Michael Kennedy, Catherine L. Macpherson, Peter C. D. Ji, Xuhuai Van Roekel, Sabrina Fraga, Danielle A. Wang, Kun Zhu, Jinguo Wang, Yoyo Sharp, Zelton D. Miller, Richard A. Rando, Thomas A. Goldman, Daniel Guan, Kun‐Liang Shrager, Joseph B. Aging Cell Original Papers Aging leads to skeletal muscle atrophy (i.e., sarcopenia), and muscle fiber loss is a critical component of this process. The mechanisms underlying these age‐related changes, however, remain unclear. We show here that mTORC1 signaling is activated in a subset of skeletal muscle fibers in aging mouse and human, colocalized with fiber damage. Activation of mTORC1 in TSC1 knockout mouse muscle fibers increases the content of morphologically abnormal mitochondria and causes progressive oxidative stress, fiber damage, and fiber loss over the lifespan. Transcriptomic profiling reveals that mTORC1's activation increases the expression of growth differentiation factors (GDF3, 5, and 15), and of genes involved in mitochondrial oxidative stress and catabolism. We show that increased GDF15 is sufficient to induce oxidative stress and catabolic changes, and that mTORC1 increases the expression of GDF15 via phosphorylation of STAT3. Inhibition of mTORC1 in aging mouse decreases the expression of GDFs and STAT3's phosphorylation in skeletal muscle, reducing oxidative stress and muscle fiber damage and loss. Thus, chronically increased mTORC1 activity contributes to age‐related muscle atrophy, and GDF signaling is a proposed mechanism. John Wiley and Sons Inc. 2019-03-29 2019-06 /pmc/articles/PMC6516169/ /pubmed/30924297 http://dx.doi.org/10.1111/acel.12943 Text en © 2019 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Papers
Tang, Huibin
Inoki, Ken
Brooks, Susan V.
Okazawa, Hideki
Lee, Myung
Wang, Junying
Kim, Michael
Kennedy, Catherine L.
Macpherson, Peter C. D.
Ji, Xuhuai
Van Roekel, Sabrina
Fraga, Danielle A.
Wang, Kun
Zhu, Jinguo
Wang, Yoyo
Sharp, Zelton D.
Miller, Richard A.
Rando, Thomas A.
Goldman, Daniel
Guan, Kun‐Liang
Shrager, Joseph B.
mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
title mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
title_full mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
title_fullStr mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
title_full_unstemmed mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
title_short mTORC1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
title_sort mtorc1 underlies age‐related muscle fiber damage and loss by inducing oxidative stress and catabolism
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6516169/
https://www.ncbi.nlm.nih.gov/pubmed/30924297
http://dx.doi.org/10.1111/acel.12943
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