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Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression

Accumulation of abnormal protein inclusions is implicated in motor neuron degeneration in amyotrophic lateral sclerosis (ALS). Autophagy, an intracellular process targeting misfolded proteins and damaged organelles for lysosomal degradation, plays crucial roles in survival and diseased conditions. E...

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Autores principales: Xiao, Yajuan, Ma, Changling, Yi, Jianxun, Wu, Shaoping, Luo, Guo, Xu, Xiulong, Lin, Pei‐Hui, Sun, Jun, Zhou, Jingsong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wiley Periodicals, Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4387765/
https://www.ncbi.nlm.nih.gov/pubmed/25602021
http://dx.doi.org/10.14814/phy2.12271
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author Xiao, Yajuan
Ma, Changling
Yi, Jianxun
Wu, Shaoping
Luo, Guo
Xu, Xiulong
Lin, Pei‐Hui
Sun, Jun
Zhou, Jingsong
author_facet Xiao, Yajuan
Ma, Changling
Yi, Jianxun
Wu, Shaoping
Luo, Guo
Xu, Xiulong
Lin, Pei‐Hui
Sun, Jun
Zhou, Jingsong
author_sort Xiao, Yajuan
collection PubMed
description Accumulation of abnormal protein inclusions is implicated in motor neuron degeneration in amyotrophic lateral sclerosis (ALS). Autophagy, an intracellular process targeting misfolded proteins and damaged organelles for lysosomal degradation, plays crucial roles in survival and diseased conditions. Efforts were made to understand the role of autophagy in motor neuron degeneration and to target autophagy in motor neuron for ALS treatment. However, results were quite contradictory. Possible autophagy defects in other cell types may also complicate the results. Here, we examined autophagy activity in skeletal muscle of an ALS mouse model G93A. Through overexpression of a fluorescent protein LC3‐RFP, we found a basal increase in autophagosome formation in G93A muscle during disease progression when the mice were on a regular diet. As expected, an autophagy induction procedure (starvation plus colchicine) enhanced autophagy flux in skeletal muscle of normal mice. However, in response to the same autophagy induction procedure, G93A muscle showed significant reduction in the autophagy flux. Immunoblot analysis revealed that increased cleaved caspase‐3 associated with apoptosis was linked to the cleavage of several key proteins involved in autophagy, including Beclin‐1, which is an essential molecule connecting autophagy and apoptosis pathways. Taking together, we provide the evidence that the cytoprotective autophagy pathway is suppressed in G93A skeletal muscle and this suppression may link to the enhanced apoptosis during ALS progression. The abnormal autophagy activity in skeletal muscle likely contributes muscle degeneration and disease progression in ALS.
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spelling pubmed-43877652015-04-13 Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression Xiao, Yajuan Ma, Changling Yi, Jianxun Wu, Shaoping Luo, Guo Xu, Xiulong Lin, Pei‐Hui Sun, Jun Zhou, Jingsong Physiol Rep Original Research Accumulation of abnormal protein inclusions is implicated in motor neuron degeneration in amyotrophic lateral sclerosis (ALS). Autophagy, an intracellular process targeting misfolded proteins and damaged organelles for lysosomal degradation, plays crucial roles in survival and diseased conditions. Efforts were made to understand the role of autophagy in motor neuron degeneration and to target autophagy in motor neuron for ALS treatment. However, results were quite contradictory. Possible autophagy defects in other cell types may also complicate the results. Here, we examined autophagy activity in skeletal muscle of an ALS mouse model G93A. Through overexpression of a fluorescent protein LC3‐RFP, we found a basal increase in autophagosome formation in G93A muscle during disease progression when the mice were on a regular diet. As expected, an autophagy induction procedure (starvation plus colchicine) enhanced autophagy flux in skeletal muscle of normal mice. However, in response to the same autophagy induction procedure, G93A muscle showed significant reduction in the autophagy flux. Immunoblot analysis revealed that increased cleaved caspase‐3 associated with apoptosis was linked to the cleavage of several key proteins involved in autophagy, including Beclin‐1, which is an essential molecule connecting autophagy and apoptosis pathways. Taking together, we provide the evidence that the cytoprotective autophagy pathway is suppressed in G93A skeletal muscle and this suppression may link to the enhanced apoptosis during ALS progression. The abnormal autophagy activity in skeletal muscle likely contributes muscle degeneration and disease progression in ALS. Wiley Periodicals, Inc. 2015-01-19 /pmc/articles/PMC4387765/ /pubmed/25602021 http://dx.doi.org/10.14814/phy2.12271 Text en © 2015 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Xiao, Yajuan
Ma, Changling
Yi, Jianxun
Wu, Shaoping
Luo, Guo
Xu, Xiulong
Lin, Pei‐Hui
Sun, Jun
Zhou, Jingsong
Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
title Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
title_full Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
title_fullStr Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
title_full_unstemmed Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
title_short Suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
title_sort suppressed autophagy flux in skeletal muscle of an amyotrophic lateral sclerosis mouse model during disease progression
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4387765/
https://www.ncbi.nlm.nih.gov/pubmed/25602021
http://dx.doi.org/10.14814/phy2.12271
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