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Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes

Although less attention was paid to understanding physical localization changes in cell nuclei recently, depicting chromatin interaction maps is a topic of high interest. Here, we focused on defining extensive physical changes in chromatin organization in the process of skeletal myoblast differentia...

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Autores principales: Kolanowski, Tomasz J., Rozwadowska, Natalia, Zimna, Agnieszka, Nowaczyk, Magdalena, Siatkowski, Marcin, Łabędź, Wojciech, Wiland, Ewa, Gapiński, Jacek, Jurga, Stefan, Kurpisz, Maciej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7459101/
https://www.ncbi.nlm.nih.gov/pubmed/32868771
http://dx.doi.org/10.1038/s41598-020-70756-x
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author Kolanowski, Tomasz J.
Rozwadowska, Natalia
Zimna, Agnieszka
Nowaczyk, Magdalena
Siatkowski, Marcin
Łabędź, Wojciech
Wiland, Ewa
Gapiński, Jacek
Jurga, Stefan
Kurpisz, Maciej
author_facet Kolanowski, Tomasz J.
Rozwadowska, Natalia
Zimna, Agnieszka
Nowaczyk, Magdalena
Siatkowski, Marcin
Łabędź, Wojciech
Wiland, Ewa
Gapiński, Jacek
Jurga, Stefan
Kurpisz, Maciej
author_sort Kolanowski, Tomasz J.
collection PubMed
description Although less attention was paid to understanding physical localization changes in cell nuclei recently, depicting chromatin interaction maps is a topic of high interest. Here, we focused on defining extensive physical changes in chromatin organization in the process of skeletal myoblast differentiation. Based on RNA profiling data and 3D imaging of myogenic (NCAM1, DES, MYOG, ACTN3, MYF5, MYF6, ACTN2, and MYH2) and other selected genes (HPRT1, CDH15, DPP4 and VCAM1), we observed correlations between the following: (1) expression change and localization, (2) a gene and its genomic neighbourhood expression and (3) intra-chromosome and microscopical locus-centromere distances. In particular, we demonstrated the negative regulation of DPP4 mRNA (p < 0.001) and protein (p < 0.05) in differentiated myotubes, which coincided with a localization change of the DPP4 locus towards the nuclear lamina (p < 0.001) and chromosome 2 centromere (p < 0.001). Furthermore, we discuss the possible role of DPP4 in myoblasts (supported by an inhibition assay). We also provide positive regulation examples (VCAM1 and MYH2). Overall, we describe for the first time existing mechanisms of spatial gene expression regulation in myoblasts that might explain the issue of heterogenic responses observed during muscle regenerative therapies.
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spelling pubmed-74591012020-09-01 Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes Kolanowski, Tomasz J. Rozwadowska, Natalia Zimna, Agnieszka Nowaczyk, Magdalena Siatkowski, Marcin Łabędź, Wojciech Wiland, Ewa Gapiński, Jacek Jurga, Stefan Kurpisz, Maciej Sci Rep Article Although less attention was paid to understanding physical localization changes in cell nuclei recently, depicting chromatin interaction maps is a topic of high interest. Here, we focused on defining extensive physical changes in chromatin organization in the process of skeletal myoblast differentiation. Based on RNA profiling data and 3D imaging of myogenic (NCAM1, DES, MYOG, ACTN3, MYF5, MYF6, ACTN2, and MYH2) and other selected genes (HPRT1, CDH15, DPP4 and VCAM1), we observed correlations between the following: (1) expression change and localization, (2) a gene and its genomic neighbourhood expression and (3) intra-chromosome and microscopical locus-centromere distances. In particular, we demonstrated the negative regulation of DPP4 mRNA (p < 0.001) and protein (p < 0.05) in differentiated myotubes, which coincided with a localization change of the DPP4 locus towards the nuclear lamina (p < 0.001) and chromosome 2 centromere (p < 0.001). Furthermore, we discuss the possible role of DPP4 in myoblasts (supported by an inhibition assay). We also provide positive regulation examples (VCAM1 and MYH2). Overall, we describe for the first time existing mechanisms of spatial gene expression regulation in myoblasts that might explain the issue of heterogenic responses observed during muscle regenerative therapies. Nature Publishing Group UK 2020-08-31 /pmc/articles/PMC7459101/ /pubmed/32868771 http://dx.doi.org/10.1038/s41598-020-70756-x Text en © The Author(s) 2020 Open Access This 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 license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license 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 license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Kolanowski, Tomasz J.
Rozwadowska, Natalia
Zimna, Agnieszka
Nowaczyk, Magdalena
Siatkowski, Marcin
Łabędź, Wojciech
Wiland, Ewa
Gapiński, Jacek
Jurga, Stefan
Kurpisz, Maciej
Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
title Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
title_full Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
title_fullStr Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
title_full_unstemmed Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
title_short Chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
title_sort chromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate dpp4 inhibition in differentiated myotubes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7459101/
https://www.ncbi.nlm.nih.gov/pubmed/32868771
http://dx.doi.org/10.1038/s41598-020-70756-x
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