A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors
<p>Abstract</p> <p>Background</p> <p>Dynamic monitoring of protein expression and localization is fundamental to the understanding of biological processes. The paired-class homeodomain-containing transcription factor Otx2 is essential for normal head and brain developme...
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doaj-0d363d807ca84a09aca8dbe9f82641d62020-11-25T00:31:56ZengBMCBMC Developmental Biology1471-213X2007-11-017112210.1186/1471-213X-7-122A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptorsGodement PierreVincent StéphaneBéby FrancisLe Greneur CoralieFossat NicolasChatelain GillesLamonerie Thomas<p>Abstract</p> <p>Background</p> <p>Dynamic monitoring of protein expression and localization is fundamental to the understanding of biological processes. The paired-class homeodomain-containing transcription factor Otx2 is essential for normal head and brain development in vertebrates. Recent conditional knockout studies have pointed to multiple roles of this protein during late development and post-natal life. Yet, later expression and functions remain poorly characterized as specific reagents to detect the protein at any stage of development are still missing.</p> <p>Results</p> <p>We generated a new mouse line harbouring an insertion of the GFP gene within the Otx2 coding sequence to monitor the gene activity while preserving most of its functions. Our results demonstrate that this line represents a convenient tool to capture the dynamics of <it>Otx2 </it>gene expression from early embryonic stages to adulthood. In addition, we could visualize the intracellular location of Otx2 protein. In the retina, we reinterpret the former view of protein distribution and show a further level of regulation of intranuclear protein localization, which depends on the cell type.</p> <p>Conclusion</p> <p>The GFP-tagged <it>Otx2 </it>mouse line fully recapitulates previously known expression patterns and brings additional accuracy and easiness of detection of <it>Otx2 </it>gene activity. This opens up the way to live imaging of a highly dynamic actor of brain development and can be adapted to any mutant background to probe for genetic interaction between <it>Otx2 </it>and the mutated gene.</p> http://www.biomedcentral.com/1471-213X/7/122 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Godement Pierre Vincent Stéphane Béby Francis Le Greneur Coralie Fossat Nicolas Chatelain Gilles Lamonerie Thomas |
spellingShingle |
Godement Pierre Vincent Stéphane Béby Francis Le Greneur Coralie Fossat Nicolas Chatelain Gilles Lamonerie Thomas A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors BMC Developmental Biology |
author_facet |
Godement Pierre Vincent Stéphane Béby Francis Le Greneur Coralie Fossat Nicolas Chatelain Gilles Lamonerie Thomas |
author_sort |
Godement Pierre |
title |
A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors |
title_short |
A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors |
title_full |
A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors |
title_fullStr |
A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors |
title_full_unstemmed |
A new GFP-tagged line reveals unexpected Otx2 protein localization in retinal photoreceptors |
title_sort |
new gfp-tagged line reveals unexpected otx2 protein localization in retinal photoreceptors |
publisher |
BMC |
series |
BMC Developmental Biology |
issn |
1471-213X |
publishDate |
2007-11-01 |
description |
<p>Abstract</p> <p>Background</p> <p>Dynamic monitoring of protein expression and localization is fundamental to the understanding of biological processes. The paired-class homeodomain-containing transcription factor Otx2 is essential for normal head and brain development in vertebrates. Recent conditional knockout studies have pointed to multiple roles of this protein during late development and post-natal life. Yet, later expression and functions remain poorly characterized as specific reagents to detect the protein at any stage of development are still missing.</p> <p>Results</p> <p>We generated a new mouse line harbouring an insertion of the GFP gene within the Otx2 coding sequence to monitor the gene activity while preserving most of its functions. Our results demonstrate that this line represents a convenient tool to capture the dynamics of <it>Otx2 </it>gene expression from early embryonic stages to adulthood. In addition, we could visualize the intracellular location of Otx2 protein. In the retina, we reinterpret the former view of protein distribution and show a further level of regulation of intranuclear protein localization, which depends on the cell type.</p> <p>Conclusion</p> <p>The GFP-tagged <it>Otx2 </it>mouse line fully recapitulates previously known expression patterns and brings additional accuracy and easiness of detection of <it>Otx2 </it>gene activity. This opens up the way to live imaging of a highly dynamic actor of brain development and can be adapted to any mutant background to probe for genetic interaction between <it>Otx2 </it>and the mutated gene.</p> |
url |
http://www.biomedcentral.com/1471-213X/7/122 |
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