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Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system

In utero electroporation is widely used to study neuronal development and function by introducing plasmid DNA into neural progenitors during embryogenesis. This is an effective and convenient method of introducing plasmid DNA into neural precursors and is suitable for manipulating gene expression in...

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Detalles Bibliográficos
Autores principales: Yoshida, Ayako, Yamaguchi, Yoshifumi, Nonomura, Keiko, Kawakami, Koichi, Takahashi, Yoshiko, Miura, Masayuki
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2948423/
https://www.ncbi.nlm.nih.gov/pubmed/20384787
http://dx.doi.org/10.1111/j.1365-2443.2010.01397.x
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author Yoshida, Ayako
Yamaguchi, Yoshifumi
Nonomura, Keiko
Kawakami, Koichi
Takahashi, Yoshiko
Miura, Masayuki
author_facet Yoshida, Ayako
Yamaguchi, Yoshifumi
Nonomura, Keiko
Kawakami, Koichi
Takahashi, Yoshiko
Miura, Masayuki
author_sort Yoshida, Ayako
collection PubMed
description In utero electroporation is widely used to study neuronal development and function by introducing plasmid DNA into neural progenitors during embryogenesis. This is an effective and convenient method of introducing plasmid DNA into neural precursors and is suitable for manipulating gene expression in cells of the CNS. However, the applicability of this technique is comparatively limited to neuronal research, as the plasmid DNA introduced into neural progenitors during embryogenesis is diluted by cell proliferation and is not stably maintained in glial cells generated around and after birth. To overcome this limitation, we applied the Tol2 transposon system, which integrates a transgene into the genome of the host cell, to in utero electroporation. With this system, we confirmed that the transgene was effectively maintained in the progeny of embryonic neural precursors, astrocytes and oligodendrocytes. Using the glial promoters GFAP and S100β, targeted and stable expressions of transgenes in glia were obtained, which enabled the expression of different transgenes simultaneously in neurons and glia. Glia-targeted expression of the transgene that causes neuronal migration defect was achieved without the defect. Thus, use of the Tol2 transposon system in combination with in utero electroporation is a powerful method for studying glia-neuron interactions in vivo.
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spelling pubmed-29484232010-10-14 Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system Yoshida, Ayako Yamaguchi, Yoshifumi Nonomura, Keiko Kawakami, Koichi Takahashi, Yoshiko Miura, Masayuki Genes Cells Original Articles In utero electroporation is widely used to study neuronal development and function by introducing plasmid DNA into neural progenitors during embryogenesis. This is an effective and convenient method of introducing plasmid DNA into neural precursors and is suitable for manipulating gene expression in cells of the CNS. However, the applicability of this technique is comparatively limited to neuronal research, as the plasmid DNA introduced into neural progenitors during embryogenesis is diluted by cell proliferation and is not stably maintained in glial cells generated around and after birth. To overcome this limitation, we applied the Tol2 transposon system, which integrates a transgene into the genome of the host cell, to in utero electroporation. With this system, we confirmed that the transgene was effectively maintained in the progeny of embryonic neural precursors, astrocytes and oligodendrocytes. Using the glial promoters GFAP and S100β, targeted and stable expressions of transgenes in glia were obtained, which enabled the expression of different transgenes simultaneously in neurons and glia. Glia-targeted expression of the transgene that causes neuronal migration defect was achieved without the defect. Thus, use of the Tol2 transposon system in combination with in utero electroporation is a powerful method for studying glia-neuron interactions in vivo. Blackwell Publishing Ltd 2010-05 /pmc/articles/PMC2948423/ /pubmed/20384787 http://dx.doi.org/10.1111/j.1365-2443.2010.01397.x Text en Journal compilation © 2010 by the Molecular Biology Society of Japan/Blackwell Publishing Ltd http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Articles
Yoshida, Ayako
Yamaguchi, Yoshifumi
Nonomura, Keiko
Kawakami, Koichi
Takahashi, Yoshiko
Miura, Masayuki
Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system
title Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system
title_full Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system
title_fullStr Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system
title_full_unstemmed Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system
title_short Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposon-mediated gene transfer system
title_sort simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the tol2 transposon-mediated gene transfer system
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2948423/
https://www.ncbi.nlm.nih.gov/pubmed/20384787
http://dx.doi.org/10.1111/j.1365-2443.2010.01397.x
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