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Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control

Bcl-2-interacting cell death suppressor (BIS), also called BAG3, plays a role in physiological functions such as anti-apoptosis, cell proliferation, autophagy, and senescence. Whole-body Bis-knockout (KO) mice exhibit early lethality accompanied by abnormalities in cardiac and skeletal muscles, sugg...

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Autores principales: Jung, Soon-Young, Riew, Tae-Ryong, Yun, Hye Hyeon, Lim, Ji Hee, Hwang, Ji-Won, Jung, Sung Won, Kim, Hong Lim, Lee, Jae-Seon, Lee, Mun-Yong, Lee, Jeong-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253936/
https://www.ncbi.nlm.nih.gov/pubmed/37298584
http://dx.doi.org/10.3390/ijms24119635
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author Jung, Soon-Young
Riew, Tae-Ryong
Yun, Hye Hyeon
Lim, Ji Hee
Hwang, Ji-Won
Jung, Sung Won
Kim, Hong Lim
Lee, Jae-Seon
Lee, Mun-Yong
Lee, Jeong-Hwa
author_facet Jung, Soon-Young
Riew, Tae-Ryong
Yun, Hye Hyeon
Lim, Ji Hee
Hwang, Ji-Won
Jung, Sung Won
Kim, Hong Lim
Lee, Jae-Seon
Lee, Mun-Yong
Lee, Jeong-Hwa
author_sort Jung, Soon-Young
collection PubMed
description Bcl-2-interacting cell death suppressor (BIS), also called BAG3, plays a role in physiological functions such as anti-apoptosis, cell proliferation, autophagy, and senescence. Whole-body Bis-knockout (KO) mice exhibit early lethality accompanied by abnormalities in cardiac and skeletal muscles, suggesting the critical role of BIS in these muscles. In this study, we generated skeletal muscle-specific Bis-knockout (Bis-SMKO) mice for the first time. Bis-SMKO mice exhibit growth retardation, kyphosis, a lack of peripheral fat, and respiratory failure, ultimately leading to early death. Regenerating fibers and increased intensity in cleaved PARP1 immunostaining were observed in the diaphragm of Bis-SMKO mice, indicating considerable muscle degeneration. Through electron microscopy analysis, we observed myofibrillar disruption, degenerated mitochondria, and autophagic vacuoles in the Bis-SMKO diaphragm. Specifically, autophagy was impaired, and heat shock proteins (HSPs), such as HSPB5 and HSP70, and z-disk proteins, including filamin C and desmin, accumulated in Bis-SMKO skeletal muscles. We also found metabolic impairments, including decreased ATP levels and lactate dehydrogenase (LDH) and creatine kinase (CK) activities in the diaphragm of Bis-SMKO mice. Our findings highlight that BIS is critical for protein homeostasis and energy metabolism in skeletal muscles, suggesting that Bis-SMKO mice could be used as a therapeutic strategy for myopathies and to elucidate the molecular function of BIS in skeletal muscle physiology.
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spelling pubmed-102539362023-06-10 Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control Jung, Soon-Young Riew, Tae-Ryong Yun, Hye Hyeon Lim, Ji Hee Hwang, Ji-Won Jung, Sung Won Kim, Hong Lim Lee, Jae-Seon Lee, Mun-Yong Lee, Jeong-Hwa Int J Mol Sci Article Bcl-2-interacting cell death suppressor (BIS), also called BAG3, plays a role in physiological functions such as anti-apoptosis, cell proliferation, autophagy, and senescence. Whole-body Bis-knockout (KO) mice exhibit early lethality accompanied by abnormalities in cardiac and skeletal muscles, suggesting the critical role of BIS in these muscles. In this study, we generated skeletal muscle-specific Bis-knockout (Bis-SMKO) mice for the first time. Bis-SMKO mice exhibit growth retardation, kyphosis, a lack of peripheral fat, and respiratory failure, ultimately leading to early death. Regenerating fibers and increased intensity in cleaved PARP1 immunostaining were observed in the diaphragm of Bis-SMKO mice, indicating considerable muscle degeneration. Through electron microscopy analysis, we observed myofibrillar disruption, degenerated mitochondria, and autophagic vacuoles in the Bis-SMKO diaphragm. Specifically, autophagy was impaired, and heat shock proteins (HSPs), such as HSPB5 and HSP70, and z-disk proteins, including filamin C and desmin, accumulated in Bis-SMKO skeletal muscles. We also found metabolic impairments, including decreased ATP levels and lactate dehydrogenase (LDH) and creatine kinase (CK) activities in the diaphragm of Bis-SMKO mice. Our findings highlight that BIS is critical for protein homeostasis and energy metabolism in skeletal muscles, suggesting that Bis-SMKO mice could be used as a therapeutic strategy for myopathies and to elucidate the molecular function of BIS in skeletal muscle physiology. MDPI 2023-06-01 /pmc/articles/PMC10253936/ /pubmed/37298584 http://dx.doi.org/10.3390/ijms24119635 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jung, Soon-Young
Riew, Tae-Ryong
Yun, Hye Hyeon
Lim, Ji Hee
Hwang, Ji-Won
Jung, Sung Won
Kim, Hong Lim
Lee, Jae-Seon
Lee, Mun-Yong
Lee, Jeong-Hwa
Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control
title Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control
title_full Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control
title_fullStr Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control
title_full_unstemmed Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control
title_short Skeletal Muscle-Specific Bis Depletion Leads to Muscle Dysfunction and Early Death Accompanied by Impairment in Protein Quality Control
title_sort skeletal muscle-specific bis depletion leads to muscle dysfunction and early death accompanied by impairment in protein quality control
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253936/
https://www.ncbi.nlm.nih.gov/pubmed/37298584
http://dx.doi.org/10.3390/ijms24119635
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