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Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP

BACKGROUND: Homeodomain proteins play critical roles in shaping the development of the embryonic central nervous system in mammals. After birth, neurogenic activities are relegated to stem cell niches, which include the subgranular layer of the dentate gyrus of the hippocampus. Here, we have analyze...

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Autores principales: De Toni, Arianna, Zbinden, Marie, Epstein, Jonathan A, Altaba, Ariel Ruiz i, Prochiantz, Alain, Caillé, Isabelle
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2416439/
https://www.ncbi.nlm.nih.gov/pubmed/18507846
http://dx.doi.org/10.1186/1749-8104-3-13
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author De Toni, Arianna
Zbinden, Marie
Epstein, Jonathan A
Altaba, Ariel Ruiz i
Prochiantz, Alain
Caillé, Isabelle
author_facet De Toni, Arianna
Zbinden, Marie
Epstein, Jonathan A
Altaba, Ariel Ruiz i
Prochiantz, Alain
Caillé, Isabelle
author_sort De Toni, Arianna
collection PubMed
description BACKGROUND: Homeodomain proteins play critical roles in shaping the development of the embryonic central nervous system in mammals. After birth, neurogenic activities are relegated to stem cell niches, which include the subgranular layer of the dentate gyrus of the hippocampus. Here, we have analyzed the function of HOP (Homeodomain only protein) in this stem cell niche and in human glioblastomas. RESULTS: We find that HOP is strongly expressed by radial astrocytes of the dentate gyrus in mice, which are stem cells that give rise to hippocampal granular neurons throughout adulthood. Deletion or down-regulation of HOP results in a decrease of apoptosis of these stem cells without changes in proliferation, and in an increase in the number of newly formed granule neurons. We also find that human glioblastomas largely lack HOP expression and that reintroduction of HOP function in glioma cells cultured as gliomaspheres leads to enhanced apoptosis in a subset of cases. In these cells, HOP function decreases clonogenicity. CONCLUSION: These data suggest that HOP participates in the regulation of the adult mouse hippocampal stem cell niche by negatively affecting cell survival. In addition, HOP may work as a tumor suppressor in a subset of glioblastomas. HOP function thus appears to be critical in the adult brain in a region of continued plasticity, and its deregulation may contribute to disease.
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spelling pubmed-24164392008-06-07 Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP De Toni, Arianna Zbinden, Marie Epstein, Jonathan A Altaba, Ariel Ruiz i Prochiantz, Alain Caillé, Isabelle Neural Develop Research Article BACKGROUND: Homeodomain proteins play critical roles in shaping the development of the embryonic central nervous system in mammals. After birth, neurogenic activities are relegated to stem cell niches, which include the subgranular layer of the dentate gyrus of the hippocampus. Here, we have analyzed the function of HOP (Homeodomain only protein) in this stem cell niche and in human glioblastomas. RESULTS: We find that HOP is strongly expressed by radial astrocytes of the dentate gyrus in mice, which are stem cells that give rise to hippocampal granular neurons throughout adulthood. Deletion or down-regulation of HOP results in a decrease of apoptosis of these stem cells without changes in proliferation, and in an increase in the number of newly formed granule neurons. We also find that human glioblastomas largely lack HOP expression and that reintroduction of HOP function in glioma cells cultured as gliomaspheres leads to enhanced apoptosis in a subset of cases. In these cells, HOP function decreases clonogenicity. CONCLUSION: These data suggest that HOP participates in the regulation of the adult mouse hippocampal stem cell niche by negatively affecting cell survival. In addition, HOP may work as a tumor suppressor in a subset of glioblastomas. HOP function thus appears to be critical in the adult brain in a region of continued plasticity, and its deregulation may contribute to disease. BioMed Central 2008-05-28 /pmc/articles/PMC2416439/ /pubmed/18507846 http://dx.doi.org/10.1186/1749-8104-3-13 Text en Copyright © 2008 De Toni et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
De Toni, Arianna
Zbinden, Marie
Epstein, Jonathan A
Altaba, Ariel Ruiz i
Prochiantz, Alain
Caillé, Isabelle
Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP
title Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP
title_full Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP
title_fullStr Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP
title_full_unstemmed Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP
title_short Regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein HOP
title_sort regulation of survival in adult hippocampal and glioblastoma stem cell lineages by the homeodomain-only protein hop
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2416439/
https://www.ncbi.nlm.nih.gov/pubmed/18507846
http://dx.doi.org/10.1186/1749-8104-3-13
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