Cargando…

Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives

The neural crest (NC) comprises a multipotent cell population that produces peripheral neurons, cartilage, and smooth muscle cells, among other phenotypes. The participation of Hes1 and Msx1 when expressed in mouse embryonic stem cells (mESCs) undergoing NC differentiation is unexplored. In this wor...

Descripción completa

Detalles Bibliográficos
Autores principales: Méndez-Maldonado, Karla, Vega-López, Guillermo, Caballero-Chacón, Sara, Aybar, Manuel J., Velasco, Iván
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321090/
https://www.ncbi.nlm.nih.gov/pubmed/30551562
http://dx.doi.org/10.3390/ijms19124025
_version_ 1783385359391916032
author Méndez-Maldonado, Karla
Vega-López, Guillermo
Caballero-Chacón, Sara
Aybar, Manuel J.
Velasco, Iván
author_facet Méndez-Maldonado, Karla
Vega-López, Guillermo
Caballero-Chacón, Sara
Aybar, Manuel J.
Velasco, Iván
author_sort Méndez-Maldonado, Karla
collection PubMed
description The neural crest (NC) comprises a multipotent cell population that produces peripheral neurons, cartilage, and smooth muscle cells, among other phenotypes. The participation of Hes1 and Msx1 when expressed in mouse embryonic stem cells (mESCs) undergoing NC differentiation is unexplored. In this work, we generated stable mESCs transfected with constructs encoding chimeric proteins in which the ligand binding domain of glucocorticoid receptor (GR), which is translocated to the nucleus by dexamethasone addition, is fused to either Hes1 (HGR) or Msx1 (MGR), as well as double-transgenic cells (HGR+MGR). These lines continued to express pluripotency markers. Upon NC differentiation, all lines exhibited significantly decreased Sox2 expression and upregulated Sox9, Snai1, and Msx1 expression, indicating NC commitment. Dexamethasone was added to induce nuclear translocation of the chimeric proteins. We found that Collagen IIa transcripts were increased in MGR cells, whereas coactivation of HGR+MGR caused a significant increase in Smooth muscle actin (α-Sma) transcripts. Immunostaining showed that activation in HGR+MGR cells induced higher proportions of β-TUBULIN III(+), α-SMA(+) and COL2A1(+) cells. These findings indicate that nuclear translocation of MSX-1, alone or in combination with HES-1, produce chondrocyte-like cells, and simultaneous activation of HES-1 and MSX-1 increases the generation of smooth muscle and neuronal cells.
format Online
Article
Text
id pubmed-6321090
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-63210902019-01-07 Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives Méndez-Maldonado, Karla Vega-López, Guillermo Caballero-Chacón, Sara Aybar, Manuel J. Velasco, Iván Int J Mol Sci Article The neural crest (NC) comprises a multipotent cell population that produces peripheral neurons, cartilage, and smooth muscle cells, among other phenotypes. The participation of Hes1 and Msx1 when expressed in mouse embryonic stem cells (mESCs) undergoing NC differentiation is unexplored. In this work, we generated stable mESCs transfected with constructs encoding chimeric proteins in which the ligand binding domain of glucocorticoid receptor (GR), which is translocated to the nucleus by dexamethasone addition, is fused to either Hes1 (HGR) or Msx1 (MGR), as well as double-transgenic cells (HGR+MGR). These lines continued to express pluripotency markers. Upon NC differentiation, all lines exhibited significantly decreased Sox2 expression and upregulated Sox9, Snai1, and Msx1 expression, indicating NC commitment. Dexamethasone was added to induce nuclear translocation of the chimeric proteins. We found that Collagen IIa transcripts were increased in MGR cells, whereas coactivation of HGR+MGR caused a significant increase in Smooth muscle actin (α-Sma) transcripts. Immunostaining showed that activation in HGR+MGR cells induced higher proportions of β-TUBULIN III(+), α-SMA(+) and COL2A1(+) cells. These findings indicate that nuclear translocation of MSX-1, alone or in combination with HES-1, produce chondrocyte-like cells, and simultaneous activation of HES-1 and MSX-1 increases the generation of smooth muscle and neuronal cells. MDPI 2018-12-13 /pmc/articles/PMC6321090/ /pubmed/30551562 http://dx.doi.org/10.3390/ijms19124025 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Méndez-Maldonado, Karla
Vega-López, Guillermo
Caballero-Chacón, Sara
Aybar, Manuel J.
Velasco, Iván
Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives
title Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives
title_full Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives
title_fullStr Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives
title_full_unstemmed Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives
title_short Activation of Hes1 and Msx1 in Transgenic Mouse Embryonic Stem Cells Increases Differentiation into Neural Crest Derivatives
title_sort activation of hes1 and msx1 in transgenic mouse embryonic stem cells increases differentiation into neural crest derivatives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321090/
https://www.ncbi.nlm.nih.gov/pubmed/30551562
http://dx.doi.org/10.3390/ijms19124025
work_keys_str_mv AT mendezmaldonadokarla activationofhes1andmsx1intransgenicmouseembryonicstemcellsincreasesdifferentiationintoneuralcrestderivatives
AT vegalopezguillermo activationofhes1andmsx1intransgenicmouseembryonicstemcellsincreasesdifferentiationintoneuralcrestderivatives
AT caballerochaconsara activationofhes1andmsx1intransgenicmouseembryonicstemcellsincreasesdifferentiationintoneuralcrestderivatives
AT aybarmanuelj activationofhes1andmsx1intransgenicmouseembryonicstemcellsincreasesdifferentiationintoneuralcrestderivatives
AT velascoivan activationofhes1andmsx1intransgenicmouseembryonicstemcellsincreasesdifferentiationintoneuralcrestderivatives