Mostrar el registro sencillo del ítem
dc.contributor.author | Peñaloza, E | |
dc.contributor.author | Soto-Carrasco, G | |
dc.contributor.author | Krause, BJ | |
dc.date.accessioned | 2024-01-17T15:54:57Z | |
dc.date.available | 2024-01-17T15:54:57Z | |
dc.date.issued | 2020 | |
dc.identifier.uri | https://repositorio.uoh.cl/handle/611/672 | |
dc.description.abstract | Clinical conditions associated with hypoxia and oxidative stress, such as fetal growth restriction (FGR), results in endothelial dysfunction. Previous reports show that changes in eNOS expression under these conditions are tightly controlled by DNA methylation and histone posttranslational modifications. However, the contribution of an orchestrating epigenetic mechanism, such as miRNAs, on the NO-related genes expression has not been addressed. We aimed to determine the levels of miRNAs highly expressed in normal endothelial cells (EC), miR21 and miR-126, in FGR human umbilical artery EC (HUAEC), and their effects on hypoxia-dependent regulation of both, NO-related and oxidative stress-related genes. Results were validated by transcriptome analysis of HUAEC cultured under chronic low oxygen conditions. Cultured FGR-HUAEC showed decreased hsa-miR-21, DDAH1, SOD1, and NRF2, but increased miR-126, NOX4, and eNOS levels, compared with controls. MiR-215p levels in FGR were associated with increased hg-miR-21 gene promoter methylation, with no changes in hgmiR-126 gene promoter methylation. HUAEC exposed to hypoxia showed a transient increase in eNOS and DDAH11, paralleled by decrease miR-21-5p levels, but no changes in miR-126-3p and the other genes under study. Transcriptome profiling showed an inverse relationship among miR-21 and several transcripts targeted by miR-21 in HUAEC exposed to hypoxia, meanwhile miR-21-5p-mimic decreased eNOS and DDAH1 transcripts stability, blocking their induction by hypoxia. Consequently, FGR programs a hypoxia-related miRNA that contributes to the regulation of the NO pathway, involving a direct effect of miR-21-5p on eNOS transcript stability, not previously reported. Moreover, hypoxia downregulates miR-21-5p, contributing to increasing the expression of NO-related genes in arterial endothelial cells. | |
dc.description.sponsorship | Fondo Nacional de Desarrollo Cientifico y Tecnologico (FONDECYT) -Agencia Nacional de Investigacion y Desarrollo | |
dc.description.sponsorship | Bank Santander University | |
dc.relation.uri | http://dx.doi.org/10.1016/j.bcp.2020.114288 | |
dc.subject | miRNA | |
dc.subject | Hypoxia | |
dc.subject | Oxidative stress | |
dc.subject | Fetal growth restriction | |
dc.subject | DNA methylation | |
dc.subject | Nitric oxide | |
dc.title | MiR-21-5p directly contributes to regulating eNOS expression in human artery endothelial cells under normoxia and hypoxia | |
dc.type | Artículo | |
uoh.revista | BIOCHEMICAL PHARMACOLOGY | |
dc.identifier.doi | 10.1016/j.bcp.2020.114288 | |
dc.citation.volume | 182 | |
dc.identifier.orcid | Krause, Bernardo/0000-0002-3563-6143 | |
uoh.indizacion | Web of Science |
Ficheros | Tamaño | Formato | Ver |
---|---|---|---|
No hay ficheros asociados a este ítem. |
El Repositorio Académico de la Universidad de O'Higgins es una plataforma de difusión documental que recopila, respalda y difunde la producción científica y académica de nuestra casa de estudios. En su interfaz, se integran diferentes tipos de documentos, tales como, libros, artículos académicos, investigaciones, videos, entre otros, los cuales pueden ser difundidos y utilizados con fines académicos y de investigación.
Los recursos contenidos en el repositorio son de libre acceso en texto completo, a excepción de aquellos que por restricciones propias del Derecho de Autor o por petición expresa de la autoría principal, no pueden ser difundidos en la condición mencionada.