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Authordc.contributor.authorSepulveda, Hugo 
Authordc.contributor.authorAguilar, Rodrigo 
Authordc.contributor.authorPrieto, Catalina P. 
Authordc.contributor.authorBustos, Francisco 
Authordc.contributor.authorAedo Monsalve, Sócrates 
Authordc.contributor.authorLattus Olmos, José 
Authordc.contributor.authorVan Zundert, Brigitte 
Authordc.contributor.authorPalma, Verónica 
Authordc.contributor.authorMontecino, Martín 
Admission datedc.date.accessioned2018-05-18T13:23:51Z
Available datedc.date.available2018-05-18T13:23:51Z
Publication datedc.date.issued2017
Cita de ítemdc.identifier.citationJ. Cell. Physiol. 232: 2519–2527, 2017es_ES
Identifierdc.identifier.other10.1002/jcp.25627
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/147918
Abstractdc.description.abstractWharton's Jelly mesenchymal stem cells (WJ-MSCs) are an attractive potential source of multipotent stem cells for bone tissue replacement therapies. However, the molecular mechanisms involved in their osteogenic conversion are poorly understood. Particularly, epigenetic control operating at the promoter regions of the two master regulators of the osteogenic program, RUNX2/P57 and SP7 has not yet been described in WJ-MSCs. Via quantitative PCR profiling and chromatin immunoprecipitation (ChIP) studies, here we analyze the ability of WJ-MSCs to engage osteoblast lineage. In undifferentiated WJ-MSCs, RUNX2/P57 P1, and SP7 promoters are found deprived of significant levels of the histone post-translational marks that are normally associated with transcriptionally active genes (H3ac, H3K27ac, and H3K4me3). Moreover, the RUNX2 P1 promoter lacks two relevant histone repressive marks (H3K9me3 and H3K27me3). Importantly, RUNX2 P1 promoter is found highly enriched in the H3K4me1 mark, which has been shown recently to mediate gene repression of key regulatory genes. Upon induction of WJ-MSCs osteogenic differentiation, we found that RUNX2/P57, but not SP7 gene expression is strongly activated, in a process that is accompanied by enrichment of activating histone marks (H3K4me3, H3ac, and H3K27ac) at the P1 promoter region. Histone mark analysis showed that SP7 gene promoter is robustly enriched in epigenetic repressive marks that may explain its poor transcriptional response to osteoblast differentiating media. Together, these results point to critical regulatory steps during epigenetic control of WJ-MSCs osteogenic lineage commitment that are relevant for future applications in regenerative medicine. (C) 2016 Wiley Periodicals, Inc.es_ES
Patrocinadordc.description.sponsorshipFONDAP, 15090007 / CONICYT-DRI, 2013-0030 / FONDECYT, 1130706, 1140301, 3140368 FONDEF, D09I1047 / CONICYT, Chilees_ES
Lenguagedc.language.isoenes_ES
Publisherdc.publisherWileyes_ES
Type of licensedc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile*
Link to Licensedc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/*
Sourcedc.sourceJournal of Cellular Physiologyes_ES
Títulodc.titleEpigenetic signatures at the RUNX2-P1 and Sp7 gene promoters control osteogenic lineage commitment of umbilical cord-derived mesenchymal stem cellses_ES
Document typedc.typeArtículo de revista
Catalogueruchile.catalogadortjnes_ES
Indexationuchile.indexArtículo de publicación ISIes_ES


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Attribution-NonCommercial-NoDerivs 3.0 Chile
Except where otherwise noted, this item's license is described as Attribution-NonCommercial-NoDerivs 3.0 Chile