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Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells

Embryonic stem (ES) cells provide a potentially useful in vitro model for the study of in vivo tissue differentiation. We used mouse and human ES cells to investigate whether the lens regulatory genes Pax6 and Six3 could induce lens cell fate in vitro. To help assess the onset of lens differentiatio...

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Autores principales: Anchan, Raymond M., Lachke, Salil A., Gerami-Naini, Behzad, Lindsey, Jennifer, Ng, Nicholas, Naber, Catherine, Nickerson, Michael, Cavallesco, Resy, Rowan, Sheldon, Eaton, Jennifer L., Xi, Qiongchao, Maas, Richard L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4269389/
https://www.ncbi.nlm.nih.gov/pubmed/25517354
http://dx.doi.org/10.1371/journal.pone.0115106
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author Anchan, Raymond M.
Lachke, Salil A.
Gerami-Naini, Behzad
Lindsey, Jennifer
Ng, Nicholas
Naber, Catherine
Nickerson, Michael
Cavallesco, Resy
Rowan, Sheldon
Eaton, Jennifer L.
Xi, Qiongchao
Maas, Richard L.
author_facet Anchan, Raymond M.
Lachke, Salil A.
Gerami-Naini, Behzad
Lindsey, Jennifer
Ng, Nicholas
Naber, Catherine
Nickerson, Michael
Cavallesco, Resy
Rowan, Sheldon
Eaton, Jennifer L.
Xi, Qiongchao
Maas, Richard L.
author_sort Anchan, Raymond M.
collection PubMed
description Embryonic stem (ES) cells provide a potentially useful in vitro model for the study of in vivo tissue differentiation. We used mouse and human ES cells to investigate whether the lens regulatory genes Pax6 and Six3 could induce lens cell fate in vitro. To help assess the onset of lens differentiation, we derived a new mES cell line (Pax6-GFP mES) that expresses a GFP reporter under the control of the Pax6 P0 promoter and lens ectoderm enhancer. Pax6 or Six3 expression vectors were introduced into mES or hES cells by transfection or lentiviral infection and the differentiating ES cells analyzed for lens marker expression. Transfection of mES cells with Pax6 or Six3 but not with other genes induced the expression of lens cell markers and up-regulated GFP reporter expression in Pax6-GFP mES cells by 3 days post-transfection. By 7 days post-transfection, mES cell cultures exhibited a>10-fold increase over controls in the number of colonies expressing γA-crystallin, a lens fiber cell differentiation marker. RT-PCR and immunostaining revealed induction of additional lens epithelial or fiber cell differentiation markers including Foxe3, Prox1, α- and β-crystallins, and Tdrd7. Moreover, γA-crystallin- or Prox1-expressing lentoid bodies formed by 30 days in culture. In hES cells, Pax6 or Six3 lentiviral vectors also induced lens marker expression. mES cells that express lens markers reside close to but are distinct from the Pax6 or Six3 transduced cells, suggesting that the latter induce nearby undifferentiated ES cells to adopt a lens fate by non-cell autonomous mechanisms. In sum, we describe a novel mES cell GFP reporter line that is useful for monitoring induction of lens fate, and demonstrate that Pax6 or Six3 is sufficient to induce ES cells to adopt a lens fate, potentially via non-cell autonomous mechanisms. These findings should facilitate investigations of lens development.
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spelling pubmed-42693892014-12-26 Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells Anchan, Raymond M. Lachke, Salil A. Gerami-Naini, Behzad Lindsey, Jennifer Ng, Nicholas Naber, Catherine Nickerson, Michael Cavallesco, Resy Rowan, Sheldon Eaton, Jennifer L. Xi, Qiongchao Maas, Richard L. PLoS One Research Article Embryonic stem (ES) cells provide a potentially useful in vitro model for the study of in vivo tissue differentiation. We used mouse and human ES cells to investigate whether the lens regulatory genes Pax6 and Six3 could induce lens cell fate in vitro. To help assess the onset of lens differentiation, we derived a new mES cell line (Pax6-GFP mES) that expresses a GFP reporter under the control of the Pax6 P0 promoter and lens ectoderm enhancer. Pax6 or Six3 expression vectors were introduced into mES or hES cells by transfection or lentiviral infection and the differentiating ES cells analyzed for lens marker expression. Transfection of mES cells with Pax6 or Six3 but not with other genes induced the expression of lens cell markers and up-regulated GFP reporter expression in Pax6-GFP mES cells by 3 days post-transfection. By 7 days post-transfection, mES cell cultures exhibited a>10-fold increase over controls in the number of colonies expressing γA-crystallin, a lens fiber cell differentiation marker. RT-PCR and immunostaining revealed induction of additional lens epithelial or fiber cell differentiation markers including Foxe3, Prox1, α- and β-crystallins, and Tdrd7. Moreover, γA-crystallin- or Prox1-expressing lentoid bodies formed by 30 days in culture. In hES cells, Pax6 or Six3 lentiviral vectors also induced lens marker expression. mES cells that express lens markers reside close to but are distinct from the Pax6 or Six3 transduced cells, suggesting that the latter induce nearby undifferentiated ES cells to adopt a lens fate by non-cell autonomous mechanisms. In sum, we describe a novel mES cell GFP reporter line that is useful for monitoring induction of lens fate, and demonstrate that Pax6 or Six3 is sufficient to induce ES cells to adopt a lens fate, potentially via non-cell autonomous mechanisms. These findings should facilitate investigations of lens development. Public Library of Science 2014-12-17 /pmc/articles/PMC4269389/ /pubmed/25517354 http://dx.doi.org/10.1371/journal.pone.0115106 Text en © 2014 Anchan 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
Anchan, Raymond M.
Lachke, Salil A.
Gerami-Naini, Behzad
Lindsey, Jennifer
Ng, Nicholas
Naber, Catherine
Nickerson, Michael
Cavallesco, Resy
Rowan, Sheldon
Eaton, Jennifer L.
Xi, Qiongchao
Maas, Richard L.
Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells
title Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells
title_full Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells
title_fullStr Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells
title_full_unstemmed Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells
title_short Pax6- and Six3-Mediated Induction of Lens Cell Fate in Mouse and Human ES Cells
title_sort pax6- and six3-mediated induction of lens cell fate in mouse and human es cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4269389/
https://www.ncbi.nlm.nih.gov/pubmed/25517354
http://dx.doi.org/10.1371/journal.pone.0115106
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