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The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin

Neural stem cells (NSCs) can be obtained from a variety of sources, but not all NSCs exhibit the same characteristics. We have examined how the level of glycogen synthase kinase-3 activity regulates NSCs obtained from different sources: the mouse embryonic striatum, embryonic hippocampus, and mouse...

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Autores principales: Holowacz, Tamara, Alexson, Tania O., Coles, Brenda L., Doble, Bradley W., Kelly, Kevin F., Woodgett, James R., Van Der Kooy, Derek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3744073/
https://www.ncbi.nlm.nih.gov/pubmed/23951407
http://dx.doi.org/10.1242/bio.20131941
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author Holowacz, Tamara
Alexson, Tania O.
Coles, Brenda L.
Doble, Bradley W.
Kelly, Kevin F.
Woodgett, James R.
Van Der Kooy, Derek
author_facet Holowacz, Tamara
Alexson, Tania O.
Coles, Brenda L.
Doble, Bradley W.
Kelly, Kevin F.
Woodgett, James R.
Van Der Kooy, Derek
author_sort Holowacz, Tamara
collection PubMed
description Neural stem cells (NSCs) can be obtained from a variety of sources, but not all NSCs exhibit the same characteristics. We have examined how the level of glycogen synthase kinase-3 activity regulates NSCs obtained from different sources: the mouse embryonic striatum, embryonic hippocampus, and mouse ES cells. Growth of striatal NSCs is enhanced by mild inhibition of GSK-3 but not by strong inhibition that is accompanied by Wnt/TCF transcriptional activation. In contrast, the growth of hippocampal NSCs is enhanced by both mild inhibition of GSK-3 as well as stronger inhibition. Active Wnt/TCF signaling, which occurs normally in the embryonic hippocampus, is required for growth of neural stem and progenitor cells. In the embryonic striatal germinal zone, however, TCF signaling is normally absent and its activation inhibits growth of NSCs from this region. Using a genetic model for progressive loss of GSK-3, we find that primitive ES cell-derived NSCs resemble striatal NSCs. That is, partial loss of GSK-3 alleles leads to an increase in NSCs while complete ablation of GSK-3, and activation of TCF-signaling, leads to their decline. Furthermore, expression of dominant negative TCF-4 in the GSK-3-null background was effective in blocking expression of Wnt-response genes and was also able to rescue neuronal gene expression. These results reveal that GSK-3 regulates NSCs by divergent pathways depending on the tissue of origin. The responses of these neural precursor cells may be contingent on baseline Wnt/TCF signaling occurring in a particular tissue.
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spelling pubmed-37440732013-08-15 The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin Holowacz, Tamara Alexson, Tania O. Coles, Brenda L. Doble, Bradley W. Kelly, Kevin F. Woodgett, James R. Van Der Kooy, Derek Biol Open Research Article Neural stem cells (NSCs) can be obtained from a variety of sources, but not all NSCs exhibit the same characteristics. We have examined how the level of glycogen synthase kinase-3 activity regulates NSCs obtained from different sources: the mouse embryonic striatum, embryonic hippocampus, and mouse ES cells. Growth of striatal NSCs is enhanced by mild inhibition of GSK-3 but not by strong inhibition that is accompanied by Wnt/TCF transcriptional activation. In contrast, the growth of hippocampal NSCs is enhanced by both mild inhibition of GSK-3 as well as stronger inhibition. Active Wnt/TCF signaling, which occurs normally in the embryonic hippocampus, is required for growth of neural stem and progenitor cells. In the embryonic striatal germinal zone, however, TCF signaling is normally absent and its activation inhibits growth of NSCs from this region. Using a genetic model for progressive loss of GSK-3, we find that primitive ES cell-derived NSCs resemble striatal NSCs. That is, partial loss of GSK-3 alleles leads to an increase in NSCs while complete ablation of GSK-3, and activation of TCF-signaling, leads to their decline. Furthermore, expression of dominant negative TCF-4 in the GSK-3-null background was effective in blocking expression of Wnt-response genes and was also able to rescue neuronal gene expression. These results reveal that GSK-3 regulates NSCs by divergent pathways depending on the tissue of origin. The responses of these neural precursor cells may be contingent on baseline Wnt/TCF signaling occurring in a particular tissue. The Company of Biologists 2013-06-20 /pmc/articles/PMC3744073/ /pubmed/23951407 http://dx.doi.org/10.1242/bio.20131941 Text en © 2013. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Holowacz, Tamara
Alexson, Tania O.
Coles, Brenda L.
Doble, Bradley W.
Kelly, Kevin F.
Woodgett, James R.
Van Der Kooy, Derek
The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin
title The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin
title_full The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin
title_fullStr The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin
title_full_unstemmed The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin
title_short The responses of neural stem cells to the level of GSK-3 depend on the tissue of origin
title_sort responses of neural stem cells to the level of gsk-3 depend on the tissue of origin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3744073/
https://www.ncbi.nlm.nih.gov/pubmed/23951407
http://dx.doi.org/10.1242/bio.20131941
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