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The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate

Bmp and Fgf signaling are widely involved in multiple aspects of embryonic development. More recently non coding RNAs, such as microRNAs have also been reported to play essential roles during embryonic development. We have previously demonstrated that microRNAs, i.e., miR-130, play an essential role...

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Autores principales: Garcia-Padilla, Carlos, Hernandez-Torres, Francisco, Lozano-Velasco, Estefania, Dueñas, Angel, Muñoz-Gallardo, Maria del Mar, Garcia-Valencia, Isabel S., Palencia-Vincent, Lledó, Aranega, Amelia, Franco, Diego
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8763981/
https://www.ncbi.nlm.nih.gov/pubmed/35059396
http://dx.doi.org/10.3389/fcell.2021.757781
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author Garcia-Padilla, Carlos
Hernandez-Torres, Francisco
Lozano-Velasco, Estefania
Dueñas, Angel
Muñoz-Gallardo, Maria del Mar
Garcia-Valencia, Isabel S.
Palencia-Vincent, Lledó
Aranega, Amelia
Franco, Diego
author_facet Garcia-Padilla, Carlos
Hernandez-Torres, Francisco
Lozano-Velasco, Estefania
Dueñas, Angel
Muñoz-Gallardo, Maria del Mar
Garcia-Valencia, Isabel S.
Palencia-Vincent, Lledó
Aranega, Amelia
Franco, Diego
author_sort Garcia-Padilla, Carlos
collection PubMed
description Bmp and Fgf signaling are widely involved in multiple aspects of embryonic development. More recently non coding RNAs, such as microRNAs have also been reported to play essential roles during embryonic development. We have previously demonstrated that microRNAs, i.e., miR-130, play an essential role modulating Bmp and Fgf signaling during early stages of cardiomyogenesis. More recently, we have also demonstrated that microRNAs are capable of modulating cell fate decision during proepicardial/septum transversum (PE/ST) development, since over-expression of miR-23 blocked while miR-125, miR-146, miR-223 and miR-195 enhanced PE/ST-derived cardiomyogenesis, respectively. Importantly, regulation of these microRNAs is distinct modulated by Bmp2 and Fgf2 administration in chicken. In this study, we aim to dissect the functional role of Bmp and Fgf signaling during mouse PE/ST development, their implication regulating post-transcriptional modulators such as microRNAs and their impact on lineage determination. Mouse PE/ST explants and epicardial/endocardial cell cultures were distinctly administrated Bmp and Fgf family members. qPCR analyses of distinct microRNAs, cardiomyogenic, fibrogenic differentiation markers as well as key elements directly epithelial to mesenchymal transition were evaluated. Our data demonstrate that neither Bmp2/Bmp4 nor Fgf2/Fgf8 signaling is capable of inducing cardiomyogenesis, fibrogenesis or inducing EMT in mouse PE/ST explants, yet deregulation of several microRNAs is observed, in contrast to previous findings in chicken PE/ST. RNAseq analyses in mouse PE/ST and embryonic epicardium identified novel Bmp and Fgf family members that might be involved in such cell fate differences, however, their implication on EMT induction and cardiomyogenic and/or fibrogenic differentiation is limited. Thus our data support the notion of species-specific differences regulating PE/ST cardiomyogenic lineage commitment.
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spelling pubmed-87639812022-01-19 The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate Garcia-Padilla, Carlos Hernandez-Torres, Francisco Lozano-Velasco, Estefania Dueñas, Angel Muñoz-Gallardo, Maria del Mar Garcia-Valencia, Isabel S. Palencia-Vincent, Lledó Aranega, Amelia Franco, Diego Front Cell Dev Biol Cell and Developmental Biology Bmp and Fgf signaling are widely involved in multiple aspects of embryonic development. More recently non coding RNAs, such as microRNAs have also been reported to play essential roles during embryonic development. We have previously demonstrated that microRNAs, i.e., miR-130, play an essential role modulating Bmp and Fgf signaling during early stages of cardiomyogenesis. More recently, we have also demonstrated that microRNAs are capable of modulating cell fate decision during proepicardial/septum transversum (PE/ST) development, since over-expression of miR-23 blocked while miR-125, miR-146, miR-223 and miR-195 enhanced PE/ST-derived cardiomyogenesis, respectively. Importantly, regulation of these microRNAs is distinct modulated by Bmp2 and Fgf2 administration in chicken. In this study, we aim to dissect the functional role of Bmp and Fgf signaling during mouse PE/ST development, their implication regulating post-transcriptional modulators such as microRNAs and their impact on lineage determination. Mouse PE/ST explants and epicardial/endocardial cell cultures were distinctly administrated Bmp and Fgf family members. qPCR analyses of distinct microRNAs, cardiomyogenic, fibrogenic differentiation markers as well as key elements directly epithelial to mesenchymal transition were evaluated. Our data demonstrate that neither Bmp2/Bmp4 nor Fgf2/Fgf8 signaling is capable of inducing cardiomyogenesis, fibrogenesis or inducing EMT in mouse PE/ST explants, yet deregulation of several microRNAs is observed, in contrast to previous findings in chicken PE/ST. RNAseq analyses in mouse PE/ST and embryonic epicardium identified novel Bmp and Fgf family members that might be involved in such cell fate differences, however, their implication on EMT induction and cardiomyogenic and/or fibrogenic differentiation is limited. Thus our data support the notion of species-specific differences regulating PE/ST cardiomyogenic lineage commitment. Frontiers Media S.A. 2022-01-04 /pmc/articles/PMC8763981/ /pubmed/35059396 http://dx.doi.org/10.3389/fcell.2021.757781 Text en Copyright © 2022 Garcia-Padilla, Hernandez-Torres, Lozano-Velasco, Dueñas, Muñoz-Gallardo, Garcia-Valencia, Palencia-Vincent, Aranega and Franco. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Garcia-Padilla, Carlos
Hernandez-Torres, Francisco
Lozano-Velasco, Estefania
Dueñas, Angel
Muñoz-Gallardo, Maria del Mar
Garcia-Valencia, Isabel S.
Palencia-Vincent, Lledó
Aranega, Amelia
Franco, Diego
The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate
title The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate
title_full The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate
title_fullStr The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate
title_full_unstemmed The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate
title_short The Role of Bmp- and Fgf Signaling Modulating Mouse Proepicardium Cell Fate
title_sort role of bmp- and fgf signaling modulating mouse proepicardium cell fate
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8763981/
https://www.ncbi.nlm.nih.gov/pubmed/35059396
http://dx.doi.org/10.3389/fcell.2021.757781
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