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Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas

BACKGROUND: Pluripotent stem cells present the ability to self-renew and undergo differentiation into any cell type building an organism. Importantly, a lot of evidence on embryonic stem cell (ESC) differentiation comes from in vitro studies. However, ESCs cultured in vitro do not necessarily behave...

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Autores principales: Florkowska, Anita, Meszka, Igor, Zawada, Magdalena, Legutko, Diana, Proszynski, Tomasz J., Janczyk-Ilach, Katarzyna, Streminska, Wladyslawa, Ciemerych, Maria A., Grabowska, Iwona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7301568/
https://www.ncbi.nlm.nih.gov/pubmed/32552916
http://dx.doi.org/10.1186/s13287-020-01742-3
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author Florkowska, Anita
Meszka, Igor
Zawada, Magdalena
Legutko, Diana
Proszynski, Tomasz J.
Janczyk-Ilach, Katarzyna
Streminska, Wladyslawa
Ciemerych, Maria A.
Grabowska, Iwona
author_facet Florkowska, Anita
Meszka, Igor
Zawada, Magdalena
Legutko, Diana
Proszynski, Tomasz J.
Janczyk-Ilach, Katarzyna
Streminska, Wladyslawa
Ciemerych, Maria A.
Grabowska, Iwona
author_sort Florkowska, Anita
collection PubMed
description BACKGROUND: Pluripotent stem cells present the ability to self-renew and undergo differentiation into any cell type building an organism. Importantly, a lot of evidence on embryonic stem cell (ESC) differentiation comes from in vitro studies. However, ESCs cultured in vitro do not necessarily behave as cells differentiating in vivo. For this reason, we used teratomas to study early and advanced stages of in vivo ESC myogenic differentiation and the role of Pax7 in this process. Pax7 transcription factor plays a crucial role in the formation and differentiation of skeletal muscle precursor cells during embryonic development. It controls the expression of other myogenic regulators and also acts as an anti-apoptotic factor. It is also involved in the formation and maintenance of satellite cell population. METHODS: In vivo approach we used involved generation and analysis of pluripotent stem cell-derived teratomas. Such model allows to analyze early and also terminal stages of tissue differentiation, for example, terminal stages of myogenesis, including the formation of innervated and vascularized mature myofibers. RESULTS: We determined how the lack of Pax7 function affects the generation of different myofiber types. In Pax7−/− teratomas, the skeletal muscle tissue occupied significantly smaller area, as compared to Pax7+/+ ones. The proportion of myofibers expressing Myh3 and Myh2b did not differ between Pax7+/+ and Pax7−/− teratomas. However, the area of Myh7 and Myh2a myofibers was significantly lower in Pax7−/− ones. Molecular characteristic of skeletal muscles revealed that the levels of mRNAs coding Myh isoforms were significantly lower in Pax7−/− teratomas. The level of mRNAs encoding Pax3 was significantly higher, while the expression of Nfix, Eno3, Mck, Mef2a, and Itga7 was significantly lower in Pax7−/− teratomas, as compared to Pax7+/+ ones. We proved that the number of satellite cells in Pax7−/− teratomas was significantly reduced. Finally, analysis of neuromuscular junction localization in samples prepared with the iDISCO method confirmed that the organization of neuromuscular junctions in Pax7−/− teratomas was impaired. CONCLUSIONS: Pax7−/− ESCs differentiate in vivo to embryonic myoblasts more readily than Pax7+/+ cells. In the absence of functional Pax7, initiation of myogenic differentiation is facilitated, and as a result, the expression of mesoderm embryonic myoblast markers is upregulated. However, in the absence of functional Pax7 neuromuscular junctions, formation is abnormal, what results in lower differentiation potential of Pax7−/− ESCs during advanced stages of myogenesis.
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spelling pubmed-73015682020-06-18 Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas Florkowska, Anita Meszka, Igor Zawada, Magdalena Legutko, Diana Proszynski, Tomasz J. Janczyk-Ilach, Katarzyna Streminska, Wladyslawa Ciemerych, Maria A. Grabowska, Iwona Stem Cell Res Ther Research BACKGROUND: Pluripotent stem cells present the ability to self-renew and undergo differentiation into any cell type building an organism. Importantly, a lot of evidence on embryonic stem cell (ESC) differentiation comes from in vitro studies. However, ESCs cultured in vitro do not necessarily behave as cells differentiating in vivo. For this reason, we used teratomas to study early and advanced stages of in vivo ESC myogenic differentiation and the role of Pax7 in this process. Pax7 transcription factor plays a crucial role in the formation and differentiation of skeletal muscle precursor cells during embryonic development. It controls the expression of other myogenic regulators and also acts as an anti-apoptotic factor. It is also involved in the formation and maintenance of satellite cell population. METHODS: In vivo approach we used involved generation and analysis of pluripotent stem cell-derived teratomas. Such model allows to analyze early and also terminal stages of tissue differentiation, for example, terminal stages of myogenesis, including the formation of innervated and vascularized mature myofibers. RESULTS: We determined how the lack of Pax7 function affects the generation of different myofiber types. In Pax7−/− teratomas, the skeletal muscle tissue occupied significantly smaller area, as compared to Pax7+/+ ones. The proportion of myofibers expressing Myh3 and Myh2b did not differ between Pax7+/+ and Pax7−/− teratomas. However, the area of Myh7 and Myh2a myofibers was significantly lower in Pax7−/− ones. Molecular characteristic of skeletal muscles revealed that the levels of mRNAs coding Myh isoforms were significantly lower in Pax7−/− teratomas. The level of mRNAs encoding Pax3 was significantly higher, while the expression of Nfix, Eno3, Mck, Mef2a, and Itga7 was significantly lower in Pax7−/− teratomas, as compared to Pax7+/+ ones. We proved that the number of satellite cells in Pax7−/− teratomas was significantly reduced. Finally, analysis of neuromuscular junction localization in samples prepared with the iDISCO method confirmed that the organization of neuromuscular junctions in Pax7−/− teratomas was impaired. CONCLUSIONS: Pax7−/− ESCs differentiate in vivo to embryonic myoblasts more readily than Pax7+/+ cells. In the absence of functional Pax7, initiation of myogenic differentiation is facilitated, and as a result, the expression of mesoderm embryonic myoblast markers is upregulated. However, in the absence of functional Pax7 neuromuscular junctions, formation is abnormal, what results in lower differentiation potential of Pax7−/− ESCs during advanced stages of myogenesis. BioMed Central 2020-06-17 /pmc/articles/PMC7301568/ /pubmed/32552916 http://dx.doi.org/10.1186/s13287-020-01742-3 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research
Florkowska, Anita
Meszka, Igor
Zawada, Magdalena
Legutko, Diana
Proszynski, Tomasz J.
Janczyk-Ilach, Katarzyna
Streminska, Wladyslawa
Ciemerych, Maria A.
Grabowska, Iwona
Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas
title Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas
title_full Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas
title_fullStr Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas
title_full_unstemmed Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas
title_short Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas
title_sort pax7 as molecular switch regulating early and advanced stages of myogenic mouse esc differentiation in teratomas
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7301568/
https://www.ncbi.nlm.nih.gov/pubmed/32552916
http://dx.doi.org/10.1186/s13287-020-01742-3
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