The link between injury-induced stress and regenerative phenomena: A cellular and genetic synopsis

Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged tissues whereas others are limited to scarring. Elucidating how a tissue insult from wounding leads to a regenerative response at the genetic l...

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Published in:Biochimica et biophysica acta Vol. 1849; no. 4; pp. 454 - 461
Main Authors: Erler, Piril, Monaghan, James R.
Format: Journal Article
Language:English
Published: Netherlands Elsevier B.V 01.04.2015
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ISSN:1874-9399, 0006-3002, 1876-4320
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Abstract Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged tissues whereas others are limited to scarring. Elucidating how a tissue insult from wounding leads to a regenerative response at the genetic level is essential to make regenerative advantages translational. It has become clear that animals with regenerative abilities recycle developmental programs after injury, reactivating genes that have lied dormant throughout adulthood. The question that is critical to our understanding of regeneration is how a specific set of developmentally important genes can be reactivated only after an acute tissue insult. Here, we review how injury-induced cellular stresses such as hypoxic, oxidative, and mechanical stress may contribute to the genomic and epigenetic changes that promote regeneration in animals. This article is part of a Special Issue entitled: Stress as a fundamental theme in cell plasticity. •Regeneration is initiated by local injury-induced signaling.•Reactive oxygen species are damage signals that initiate regenerative processes.•Epigenetic changes during regeneration allow reactivation of developmental programs.•Transposable elements become activated during some modes of regeneration.
AbstractList Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged tissues whereas others are limited to scarring. Elucidating how a tissue insult from wounding leads to a regenerative response at the genetic level is essential to make regenerative advantages translational. It has become clear that animals with regenerative abilities recycle developmental programs after injury, reactivating genes that have lied dormant throughout adulthood. The question that is critical to our understanding of regeneration is how a specific set of developmentally important genes can be reactivated only after an acute tissue insult. Here, we review how injury-induced cellular stresses such as hypoxic, oxidative, and mechanical stress may contribute to the genomic and epigenetic changes that promote regeneration in animals. This article is part of a Special Issue entitled: Stress as a fundamental theme in cell plasticity. •Regeneration is initiated by local injury-induced signaling.•Reactive oxygen species are damage signals that initiate regenerative processes.•Epigenetic changes during regeneration allow reactivation of developmental programs.•Transposable elements become activated during some modes of regeneration.
Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged tissues whereas others are limited to scarring. Elucidating how a tissue insult from wounding leads to a regenerative response at the genetic level is essential to make regenerative advantages translational. It has become clear that animals with regenerative abilities recycle developmental programs after injury, reactivating genes that have lied dormant throughout adulthood. The question that is critical to our understanding of regeneration is how a specific set of developmentally important genes can be reactivated only after an acute tissue insult. Here, we review how injury-induced cellular stresses such as hypoxic, oxidative, and mechanical stress may contribute to the genomic and epigenetic changes that promote regeneration in animals. This article is part of a Special Issue entitled: Stress as a fundamental theme in cell plasticity.Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged tissues whereas others are limited to scarring. Elucidating how a tissue insult from wounding leads to a regenerative response at the genetic level is essential to make regenerative advantages translational. It has become clear that animals with regenerative abilities recycle developmental programs after injury, reactivating genes that have lied dormant throughout adulthood. The question that is critical to our understanding of regeneration is how a specific set of developmentally important genes can be reactivated only after an acute tissue insult. Here, we review how injury-induced cellular stresses such as hypoxic, oxidative, and mechanical stress may contribute to the genomic and epigenetic changes that promote regeneration in animals. This article is part of a Special Issue entitled: Stress as a fundamental theme in cell plasticity.
Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged tissues whereas others are limited to scarring. Elucidating how a tissue insult from wounding leads to a regenerative response at the genetic level is essential to make regenerative advantages translational. It has become clear that animals with regenerative abilities recycle developmental programs after injury, reactivating genes that have lied dormant throughout adulthood. The question that is critical to our understanding of regeneration is how a specific set of developmentally important genes can be reactivated only after an acute tissue insult. Here, we review how injury-induced cellular stresses such as hypoxic, oxidative, and mechanical stress may contribute to the genomic and epigenetic changes that promote regeneration in animals. This article is part of a Special Issue entitled: Stress as a fundamental theme in cell plasticity.
Author Erler, Piril
Monaghan, James R.
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  givenname: James R.
  surname: Monaghan
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  email: j.monaghan@neu.edu
BackLink https://www.ncbi.nlm.nih.gov/pubmed/25088176$$D View this record in MEDLINE/PubMed
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Issue 4
Keywords Epigenetics
Regeneration
Oxidative stress
Injury
Stress
Language English
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Snippet Injury is an inescapable phenomenon of life that affects animals at every physiological level. Yet, some animals respond to injury by rebuilding the damaged...
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SubjectTerms Animals
Cellular Reprogramming - physiology
Epigenesis, Genetic - physiology
Epigenetics
Genome - physiology
Growth and Development - genetics
Humans
Injury
Oxidative stress
Regeneration
Regeneration - genetics
Signal Transduction - genetics
Stress
Stress, Physiological - genetics
Stress, Physiological - physiology
Wounds and Injuries - genetics
Wounds and Injuries - physiopathology
Title The link between injury-induced stress and regenerative phenomena: A cellular and genetic synopsis
URI https://dx.doi.org/10.1016/j.bbagrm.2014.07.021
https://www.ncbi.nlm.nih.gov/pubmed/25088176
https://www.proquest.com/docview/1700685518
Volume 1849
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