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The PERK arm of the unfolded protein response regulates satellite cell-mediated skeletal muscle regeneration
by
Hindi, Sajedah M
, Whittemore, Scott R
, Gallot, Yann S
, Cavener, Douglas R
, Kumar, Ashok
, Mann, Aman K
, Xiong, Guangyan
, Bohnert, Kyle R
in
Animals
/ Apoptosis
/ Arm
/ Cell activation
/ Cell Biology
/ Clonal deletion
/ Developmental Biology and Stem Cells
/ eIF-2 Kinase - metabolism
/ Endoplasmic reticulum
/ ER Stress
/ Genetic aspects
/ Homeostasis
/ IRE1/XBP1
/ Kinases
/ MAP kinase
/ Membrane Proteins - metabolism
/ Mice
/ Microsatellites (Genetics)
/ Muscle regeneration
/ Muscle, Skeletal - cytology
/ Muscle, Skeletal - injuries
/ Muscle, Skeletal - physiology
/ Musculoskeletal system
/ Myogenesis
/ Neurosciences
/ PERK
/ Physiological aspects
/ Properties
/ Protein folding
/ Protein-Serine-Threonine Kinases - metabolism
/ Proteins
/ Regeneration
/ Rodents
/ Satellite cells
/ Satellite Cells, Skeletal Muscle - physiology
/ Skeletal muscle
/ skeletal muscle regeneration
/ Software
/ Stem cell transplantation
/ Stem cells
/ survival
/ Transcription factors
/ Unfolded Protein Response
2017
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The PERK arm of the unfolded protein response regulates satellite cell-mediated skeletal muscle regeneration
by
Hindi, Sajedah M
, Whittemore, Scott R
, Gallot, Yann S
, Cavener, Douglas R
, Kumar, Ashok
, Mann, Aman K
, Xiong, Guangyan
, Bohnert, Kyle R
in
Animals
/ Apoptosis
/ Arm
/ Cell activation
/ Cell Biology
/ Clonal deletion
/ Developmental Biology and Stem Cells
/ eIF-2 Kinase - metabolism
/ Endoplasmic reticulum
/ ER Stress
/ Genetic aspects
/ Homeostasis
/ IRE1/XBP1
/ Kinases
/ MAP kinase
/ Membrane Proteins - metabolism
/ Mice
/ Microsatellites (Genetics)
/ Muscle regeneration
/ Muscle, Skeletal - cytology
/ Muscle, Skeletal - injuries
/ Muscle, Skeletal - physiology
/ Musculoskeletal system
/ Myogenesis
/ Neurosciences
/ PERK
/ Physiological aspects
/ Properties
/ Protein folding
/ Protein-Serine-Threonine Kinases - metabolism
/ Proteins
/ Regeneration
/ Rodents
/ Satellite cells
/ Satellite Cells, Skeletal Muscle - physiology
/ Skeletal muscle
/ skeletal muscle regeneration
/ Software
/ Stem cell transplantation
/ Stem cells
/ survival
/ Transcription factors
/ Unfolded Protein Response
2017
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The PERK arm of the unfolded protein response regulates satellite cell-mediated skeletal muscle regeneration
by
Hindi, Sajedah M
, Whittemore, Scott R
, Gallot, Yann S
, Cavener, Douglas R
, Kumar, Ashok
, Mann, Aman K
, Xiong, Guangyan
, Bohnert, Kyle R
in
Animals
/ Apoptosis
/ Arm
/ Cell activation
/ Cell Biology
/ Clonal deletion
/ Developmental Biology and Stem Cells
/ eIF-2 Kinase - metabolism
/ Endoplasmic reticulum
/ ER Stress
/ Genetic aspects
/ Homeostasis
/ IRE1/XBP1
/ Kinases
/ MAP kinase
/ Membrane Proteins - metabolism
/ Mice
/ Microsatellites (Genetics)
/ Muscle regeneration
/ Muscle, Skeletal - cytology
/ Muscle, Skeletal - injuries
/ Muscle, Skeletal - physiology
/ Musculoskeletal system
/ Myogenesis
/ Neurosciences
/ PERK
/ Physiological aspects
/ Properties
/ Protein folding
/ Protein-Serine-Threonine Kinases - metabolism
/ Proteins
/ Regeneration
/ Rodents
/ Satellite cells
/ Satellite Cells, Skeletal Muscle - physiology
/ Skeletal muscle
/ skeletal muscle regeneration
/ Software
/ Stem cell transplantation
/ Stem cells
/ survival
/ Transcription factors
/ Unfolded Protein Response
2017
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The PERK arm of the unfolded protein response regulates satellite cell-mediated skeletal muscle regeneration
Journal Article
The PERK arm of the unfolded protein response regulates satellite cell-mediated skeletal muscle regeneration
2017
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Overview
Regeneration of skeletal muscle in adults is mediated by satellite stem cells. Accumulation of misfolded proteins triggers endoplasmic reticulum stress that leads to unfolded protein response (UPR). The UPR is relayed to the cell through the activation of PERK, IRE1/XBP1, and ATF6. Here, we demonstrate that levels of PERK and IRE1 are increased in satellite cells upon muscle injury. Inhibition of PERK, but not the IRE1 arm of the UPR in satellite cells inhibits myofiber regeneration in adult mice. PERK is essential for the survival and differentiation of activated satellite cells into the myogenic lineage. Deletion of PERK causes hyper-activation of p38 MAPK during myogenesis. Blocking p38 MAPK activity improves the survival and differentiation of PERK-deficient satellite cells in vitro and muscle formation in vivo. Collectively, our results suggest that the PERK arm of the UPR plays a pivotal role in the regulation of satellite cell homeostasis during regenerative myogenesis.
Publisher
eLife Science Publications, Ltd,eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
Subject
/ Arm
/ Developmental Biology and Stem Cells
/ Kinases
/ Membrane Proteins - metabolism
/ Mice
/ Muscle, Skeletal - physiology
/ PERK
/ Protein-Serine-Threonine Kinases - metabolism
/ Proteins
/ Rodents
/ Satellite Cells, Skeletal Muscle - physiology
/ skeletal muscle regeneration
/ Software
/ survival
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