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Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis

During embryonic development, organ morphogenesis requires major tissue rearrangements that are tightly regulated at the genetic level. A large number of studies performed in recent decades assigned a central role to programmed cell death for such morphogenetic tissue rearrangements that often sculp...

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Autores principales: Lorda‐Diez, Carlos I., Solis‐Mancilla, Michelle E., Sanchez‐Fernandez, Cristina, Garcia‐Porrero, Juan A., Hurle, Juan M., Montero, Juan A.
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/PMC6539749/
https://www.ncbi.nlm.nih.gov/pubmed/30875434
http://dx.doi.org/10.1111/joa.12972
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author Lorda‐Diez, Carlos I.
Solis‐Mancilla, Michelle E.
Sanchez‐Fernandez, Cristina
Garcia‐Porrero, Juan A.
Hurle, Juan M.
Montero, Juan A.
author_facet Lorda‐Diez, Carlos I.
Solis‐Mancilla, Michelle E.
Sanchez‐Fernandez, Cristina
Garcia‐Porrero, Juan A.
Hurle, Juan M.
Montero, Juan A.
author_sort Lorda‐Diez, Carlos I.
collection PubMed
description During embryonic development, organ morphogenesis requires major tissue rearrangements that are tightly regulated at the genetic level. A large number of studies performed in recent decades assigned a central role to programmed cell death for such morphogenetic tissue rearrangements that often sculpt the shape of embryonic organs. However, accumulating evidence indicates that far from being the only factor responsible for sculpting organ morphology, programmed cell death is accompanied by other tissue remodeling events that ensure the outcome of morphogenesis. In this regard, cell senescence has been recently associated with morphogenetic degenerative embryonic processes as an early tissue remodeling event in development of the limbs, kidney and inner ear. Here, we have explored cell senescence by monitoring β‐galactosidase activity during embryonic heart development where programmed cell death is believed to exert an important morphogenetic function. We report the occurrence of extensive cell senescence foci during heart morphogenesis. These foci overlap spatially and temporally with the areas of programmed cell death that are associated with remodeling of the outflow tract to build the roots of the great arteries and with the septation of cardiac cavities. qPCR analysis allowed us to identify a gene expression profile characteristic of the so‐called senescence secretory associated phenotype in the remodeling outflow tract of the embryonic heart. In addition, we confirmed local upregulation of numerous tumor suppressor genes including p21, p53, p63, p73 and Btg2. Interestingly, the areas of cell senescence were also accompanied by intense lysosomal activation and non‐apoptotic DNA damage revealed by γH2AX immunolabeling. Considering the importance of sustained DNA damage as a triggering factor for cell senescence and apoptosis, we propose the coordinated contribution of DNA damage, senescence and apoptotic cell death to assure tissue remodeling in the developing vertebrate heart.
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spelling pubmed-65397492019-06-03 Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis Lorda‐Diez, Carlos I. Solis‐Mancilla, Michelle E. Sanchez‐Fernandez, Cristina Garcia‐Porrero, Juan A. Hurle, Juan M. Montero, Juan A. J Anat Original Articles During embryonic development, organ morphogenesis requires major tissue rearrangements that are tightly regulated at the genetic level. A large number of studies performed in recent decades assigned a central role to programmed cell death for such morphogenetic tissue rearrangements that often sculpt the shape of embryonic organs. However, accumulating evidence indicates that far from being the only factor responsible for sculpting organ morphology, programmed cell death is accompanied by other tissue remodeling events that ensure the outcome of morphogenesis. In this regard, cell senescence has been recently associated with morphogenetic degenerative embryonic processes as an early tissue remodeling event in development of the limbs, kidney and inner ear. Here, we have explored cell senescence by monitoring β‐galactosidase activity during embryonic heart development where programmed cell death is believed to exert an important morphogenetic function. We report the occurrence of extensive cell senescence foci during heart morphogenesis. These foci overlap spatially and temporally with the areas of programmed cell death that are associated with remodeling of the outflow tract to build the roots of the great arteries and with the septation of cardiac cavities. qPCR analysis allowed us to identify a gene expression profile characteristic of the so‐called senescence secretory associated phenotype in the remodeling outflow tract of the embryonic heart. In addition, we confirmed local upregulation of numerous tumor suppressor genes including p21, p53, p63, p73 and Btg2. Interestingly, the areas of cell senescence were also accompanied by intense lysosomal activation and non‐apoptotic DNA damage revealed by γH2AX immunolabeling. Considering the importance of sustained DNA damage as a triggering factor for cell senescence and apoptosis, we propose the coordinated contribution of DNA damage, senescence and apoptotic cell death to assure tissue remodeling in the developing vertebrate heart. John Wiley and Sons Inc. 2019-03-15 2019-06 /pmc/articles/PMC6539749/ /pubmed/30875434 http://dx.doi.org/10.1111/joa.12972 Text en © 2019 The Authors. Journal of Anatomy published by John Wiley & Sons Ltd on behalf of Anatomical Society. 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 Articles
Lorda‐Diez, Carlos I.
Solis‐Mancilla, Michelle E.
Sanchez‐Fernandez, Cristina
Garcia‐Porrero, Juan A.
Hurle, Juan M.
Montero, Juan A.
Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis
title Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis
title_full Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis
title_fullStr Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis
title_full_unstemmed Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis
title_short Cell senescence, apoptosis and DNA damage cooperate in the remodeling processes accounting for heart morphogenesis
title_sort cell senescence, apoptosis and dna damage cooperate in the remodeling processes accounting for heart morphogenesis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539749/
https://www.ncbi.nlm.nih.gov/pubmed/30875434
http://dx.doi.org/10.1111/joa.12972
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