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Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig

Animal models of familial juvenile onset of Alzheimer's disease (AD) often fail to produce diverse pathological features of the disease by modification of single gene mutations that are responsible for the disease. They can hence be poor models for testing and development of novel drugs. Here,...

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Autores principales: Hall, Vanessa J., Lindblad, Maiken M., Jakobsen, Jannik E., Gunnarsson, Anders, Schmidt, Mette, Rasmussen, Mikkel A., Volke, Daniela, Zuchner, Thole, Hyttel, Poul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4610230/
https://www.ncbi.nlm.nih.gov/pubmed/26398935
http://dx.doi.org/10.1242/dmm.019489
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author Hall, Vanessa J.
Lindblad, Maiken M.
Jakobsen, Jannik E.
Gunnarsson, Anders
Schmidt, Mette
Rasmussen, Mikkel A.
Volke, Daniela
Zuchner, Thole
Hyttel, Poul
author_facet Hall, Vanessa J.
Lindblad, Maiken M.
Jakobsen, Jannik E.
Gunnarsson, Anders
Schmidt, Mette
Rasmussen, Mikkel A.
Volke, Daniela
Zuchner, Thole
Hyttel, Poul
author_sort Hall, Vanessa J.
collection PubMed
description Animal models of familial juvenile onset of Alzheimer's disease (AD) often fail to produce diverse pathological features of the disease by modification of single gene mutations that are responsible for the disease. They can hence be poor models for testing and development of novel drugs. Here, we analyze in vitro-produced stem cells and their derivatives from a large mammalian model of the disease created by overexpression of a single mutant human gene (APPsw). We produced hemizygous and homozygous radial glial-like cells following culture and differentiation of embryonic stem cells (ESCs) isolated from embryos obtained from mated hemizygous minipigs. These cells were confirmed to co-express varying neural markers, including NES, GFAP and BLBP, typical of type one radial glial cells (RGs) from the subgranular zone. These cells had altered expression of CCND1 and NOTCH1 and decreased expression of several ribosomal RNA genes. We found that these cells were able to differentiate into astrocytes upon directed differentiation. The astrocytes produced had decreased α- and β-secretase activity, increased γ-secretase activity and altered splicing of tau. This indicates novel aspects of early onset mechanisms related to cell renewal and function in familial AD astrocytes. These outcomes also highlight that radial glia could be a potentially useful population of cells for drug discovery, and that altered APP expression and altered tau phosphorylation can be detected in an in vitro model of the disease. Finally, it might be possible to use large mammal models to model familial AD by insertion of only a single mutation.
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spelling pubmed-46102302015-10-27 Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig Hall, Vanessa J. Lindblad, Maiken M. Jakobsen, Jannik E. Gunnarsson, Anders Schmidt, Mette Rasmussen, Mikkel A. Volke, Daniela Zuchner, Thole Hyttel, Poul Dis Model Mech Research Article Animal models of familial juvenile onset of Alzheimer's disease (AD) often fail to produce diverse pathological features of the disease by modification of single gene mutations that are responsible for the disease. They can hence be poor models for testing and development of novel drugs. Here, we analyze in vitro-produced stem cells and their derivatives from a large mammalian model of the disease created by overexpression of a single mutant human gene (APPsw). We produced hemizygous and homozygous radial glial-like cells following culture and differentiation of embryonic stem cells (ESCs) isolated from embryos obtained from mated hemizygous minipigs. These cells were confirmed to co-express varying neural markers, including NES, GFAP and BLBP, typical of type one radial glial cells (RGs) from the subgranular zone. These cells had altered expression of CCND1 and NOTCH1 and decreased expression of several ribosomal RNA genes. We found that these cells were able to differentiate into astrocytes upon directed differentiation. The astrocytes produced had decreased α- and β-secretase activity, increased γ-secretase activity and altered splicing of tau. This indicates novel aspects of early onset mechanisms related to cell renewal and function in familial AD astrocytes. These outcomes also highlight that radial glia could be a potentially useful population of cells for drug discovery, and that altered APP expression and altered tau phosphorylation can be detected in an in vitro model of the disease. Finally, it might be possible to use large mammal models to model familial AD by insertion of only a single mutation. The Company of Biologists 2015-10-01 /pmc/articles/PMC4610230/ /pubmed/26398935 http://dx.doi.org/10.1242/dmm.019489 Text en © 2015. 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
Hall, Vanessa J.
Lindblad, Maiken M.
Jakobsen, Jannik E.
Gunnarsson, Anders
Schmidt, Mette
Rasmussen, Mikkel A.
Volke, Daniela
Zuchner, Thole
Hyttel, Poul
Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig
title Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig
title_full Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig
title_fullStr Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig
title_full_unstemmed Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig
title_short Impaired APP activity and altered Tau splicing in embryonic stem cell-derived astrocytes obtained from an APPsw transgenic minipig
title_sort impaired app activity and altered tau splicing in embryonic stem cell-derived astrocytes obtained from an appsw transgenic minipig
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4610230/
https://www.ncbi.nlm.nih.gov/pubmed/26398935
http://dx.doi.org/10.1242/dmm.019489
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