Literature DB >> 33575260

Programmed Cell Senescence in the Mouse Developing Spinal Cord and Notochord.

Jorge Antolio Domínguez-Bautista1, Pilar Sarah Acevo-Rodríguez1, Susana Castro-Obregón1.   

Abstract

Programmed cell senescence is a cellular process that seems to contribute to embryo development, in addition to cell proliferation, migration, differentiation and programmed cell death, and has been observed in evolutionary distant organisms such as mammals, amphibians, birds and fish. Programmed cell senescence is a phenotype similar to stress-induced cellular senescence, characterized by the expression of the cell cycle inhibitors p21CIP1/WAF and p16INK4A, increased activity of a lysosomal enzyme with beta-galactosidase activity (coined senescence-associated beta-galactosidase) and secretion of growth factors, interleukins, chemokines, metalloproteases, etc., collectively known as a senescent-associated secretory phenotype that instructs surrounding tissue. How wide is the distribution of programmed cell senescence during mouse development and its specific mechanisms to shape the embryo are still poorly understood. Here, we investigated whether markers of programmed cell senescence are found in the developing mouse spinal cord and notochord. We found discrete areas and developmental windows with high senescence-associated beta galactosidase in both spinal cord and notochord, which was reduced in mice embryos developed ex-utero in the presence of the senolytic ABT-263. Expression of p21CIP1/WAF was documented in epithelial cells of the spinal cord and the notochord, while p16INK4A was observed in motoneurons. Treatment with the senolytic ABT-263 decreased the number of motoneurons, supporting their senescent phenotype. Our data suggest that a subpopulation of motoneurons in the developing spinal cord, as well as some notochord cells undergo programmed cell senescence.
Copyright © 2021 Domínguez-Bautista, Acevo-Rodríguez and Castro-Obregón.

Entities:  

Keywords:  Cdkn1a/p21CIP1/WAF; Cdkn2a/p16INK4A; endothelial cells; motoneurons; mouse development; notochord; spinal cord

Year:  2021        PMID: 33575260      PMCID: PMC7870793          DOI: 10.3389/fcell.2021.587096

Source DB:  PubMed          Journal:  Front Cell Dev Biol        ISSN: 2296-634X


  3 in total

1.  Dynamic Spatiotemporal Expression Pattern of the Senescence-Associated Factor p16Ink4a in Development and Aging.

Authors:  Hasan Safwan-Zaiter; Nicole Wagner; Jean-François Michiels; Kay-Dietrich Wagner
Journal:  Cells       Date:  2022-02-04       Impact factor: 6.600

Review 2.  Senotherapeutics in Cancer and HIV.

Authors:  Laura Sánchez-Díaz; Asunción Espinosa-Sánchez; José-Ramón Blanco; Amancio Carnero
Journal:  Cells       Date:  2022-04-04       Impact factor: 6.600

3.  Endogenous pH 6.0 β-Galactosidase Activity Is Linked to Neuronal Differentiation in the Olfactory Epithelium.

Authors:  José Antonio de Mera-Rodríguez; Guadalupe Álvarez-Hernán; Yolanda Gañán; Ana Santos-Almeida; Gervasio Martín-Partido; Joaquín Rodríguez-León; Javier Francisco-Morcillo
Journal:  Cells       Date:  2022-01-16       Impact factor: 6.600

  3 in total

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