Cargando…

A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors

Approaches for manipulating cell type-specific gene expression during development depend on the identification of novel genetic tools. Here, we report the generation of a transgenic mouse line that utilizes Vsx2 upstream sequences to direct Cre recombinase to developing retinal bipolar cells. In con...

Descripción completa

Detalles Bibliográficos
Autores principales: Nickerson, Philip E. B., Ronellenfitch, Kara, McEwan, Jason, Kim, Howard, McInnes, Roderick R., Chow, Robert L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3205053/
https://www.ncbi.nlm.nih.gov/pubmed/22073130
http://dx.doi.org/10.1371/journal.pone.0027145
_version_ 1782215286148038656
author Nickerson, Philip E. B.
Ronellenfitch, Kara
McEwan, Jason
Kim, Howard
McInnes, Roderick R.
Chow, Robert L.
author_facet Nickerson, Philip E. B.
Ronellenfitch, Kara
McEwan, Jason
Kim, Howard
McInnes, Roderick R.
Chow, Robert L.
author_sort Nickerson, Philip E. B.
collection PubMed
description Approaches for manipulating cell type-specific gene expression during development depend on the identification of novel genetic tools. Here, we report the generation of a transgenic mouse line that utilizes Vsx2 upstream sequences to direct Cre recombinase to developing retinal bipolar cells. In contrast to the endogenous Vsx2 expression pattern, transgene expression was not detected in proliferating retinal progenitor cells and was restricted to post-mitotic bipolar cells. Cre immunolabeling was detected in rod bipolar cells and a subset of ON and OFF cone bipolar cells. Expression was first observed at postnatal day 3 and was detectable between 24 hours and 36 hours after the last S-phase of the cell cycle. The appearance of Cre-immunolabeled cells preceded the expression of bipolar cell type-specific markers such as PKCα and Cabp5 suggesting that transgene expression is initiated prior to terminal differentiation. In the presence of a constitutive conditional reporter transgene, reporter fluorescence was detected in Cre-expressing bipolar cells in the mature retina as expected, but was also observed in Cre-negative Type 2 bipolar cells and occasionally in Cre-negative photoreceptor cells. Together these findings reveal a new transgenic tool for directing gene expression to post-mitotic retinal precursors that are mostly committed to a bipolar cell fate.
format Online
Article
Text
id pubmed-3205053
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32050532011-11-09 A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors Nickerson, Philip E. B. Ronellenfitch, Kara McEwan, Jason Kim, Howard McInnes, Roderick R. Chow, Robert L. PLoS One Research Article Approaches for manipulating cell type-specific gene expression during development depend on the identification of novel genetic tools. Here, we report the generation of a transgenic mouse line that utilizes Vsx2 upstream sequences to direct Cre recombinase to developing retinal bipolar cells. In contrast to the endogenous Vsx2 expression pattern, transgene expression was not detected in proliferating retinal progenitor cells and was restricted to post-mitotic bipolar cells. Cre immunolabeling was detected in rod bipolar cells and a subset of ON and OFF cone bipolar cells. Expression was first observed at postnatal day 3 and was detectable between 24 hours and 36 hours after the last S-phase of the cell cycle. The appearance of Cre-immunolabeled cells preceded the expression of bipolar cell type-specific markers such as PKCα and Cabp5 suggesting that transgene expression is initiated prior to terminal differentiation. In the presence of a constitutive conditional reporter transgene, reporter fluorescence was detected in Cre-expressing bipolar cells in the mature retina as expected, but was also observed in Cre-negative Type 2 bipolar cells and occasionally in Cre-negative photoreceptor cells. Together these findings reveal a new transgenic tool for directing gene expression to post-mitotic retinal precursors that are mostly committed to a bipolar cell fate. Public Library of Science 2011-10-31 /pmc/articles/PMC3205053/ /pubmed/22073130 http://dx.doi.org/10.1371/journal.pone.0027145 Text en Nickerson et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nickerson, Philip E. B.
Ronellenfitch, Kara
McEwan, Jason
Kim, Howard
McInnes, Roderick R.
Chow, Robert L.
A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors
title A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors
title_full A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors
title_fullStr A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors
title_full_unstemmed A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors
title_short A Transgenic Mouse Line Expressing Cre Recombinase in Undifferentiated Postmitotic Mouse Retinal Bipolar Cell Precursors
title_sort transgenic mouse line expressing cre recombinase in undifferentiated postmitotic mouse retinal bipolar cell precursors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3205053/
https://www.ncbi.nlm.nih.gov/pubmed/22073130
http://dx.doi.org/10.1371/journal.pone.0027145
work_keys_str_mv AT nickersonphilipeb atransgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT ronellenfitchkara atransgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT mcewanjason atransgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT kimhoward atransgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT mcinnesroderickr atransgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT chowrobertl atransgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT nickersonphilipeb transgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT ronellenfitchkara transgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT mcewanjason transgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT kimhoward transgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT mcinnesroderickr transgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors
AT chowrobertl transgenicmouselineexpressingcrerecombinaseinundifferentiatedpostmitoticmouseretinalbipolarcellprecursors