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Hu antigen R is required for NOX-1 but not NOX-4 regulation by inflammatory stimuli in vascular smooth muscle cells.
Aguado, Andrea; Fischer, Thierry; Rodríguez, Cristina; Manea, Adrian; Martínez-González, José; Touyz, Rhian M; Hernanz, Raquel; Alonso, M Jesús; Dixon, Dan A; Briones, Ana M; Salaices, Mercedes.
Affiliation
  • Aguado A; aDepartment Farmacología, Universidad Autónoma de Madrid, Instituto de Investigación Hospital La Paz (IdiPAZ)bDepartment Immunology and Oncology, Centro Nacional de Biotecnología (CNB/CSIC), MadridcCentro de Investigación Cardiovascular (CSIC-ICCC), IIB-Sant Pau, Barcelona, SpaindDepartment Genomics, Transcriptomics and Molecular Therapies, Institute of Cellular Biology and Pathology 'Nicolae Simionescu', Bucharest, RomaniaeInstitute of Cardiovascular and Medical Sciences, University of Glasgow,
J Hypertens ; 34(2): 253-65, 2016 Feb.
Article in En | MEDLINE | ID: mdl-26682942
OBJECTIVE: NOX-1 and NOX-4 are key enzymes responsible for reactive oxygen species (ROS) generation in vascular smooth muscle cells (VSMC). The RNA-binding protein Hu antigen R (HuR) is implicated in posttranscriptional regulation of gene expression; however, its role regulating NOX is unknown. We investigated transcriptional and posttranscriptional mechanisms underlying angiotensin II (AngII) and IL-1ß regulation of NOX-1 and NOX-4 in VSMC and their implications in cell migration. METHODS: Rat and human VSMC were stimulated with AngII (0.1 µmol/l) and/or IL-1ß (10 ng/ml). NOX-1 and NOX-4 mRNA and protein levels, NOX-1 and NOX-4 promoter and 3'UTR activities, NADPH oxidase activity, ROS production, and cell migration were studied. RESULTS: IL-1ß increased NOX-1 expression, NADPH oxidase activity and ROS production, and decreased NOX-4 expression and H2O2 production in VSMC. AngII potentiated the IL-1ß-mediated induction of NOX-1 expression, NADPH oxidase activity, ROS production, and cell migration. However, AngII did not influence IL-1ß-induced NOX-4 downregulation. AngII + IL-1ß interfered with the decay of NOX-1 mRNA and promoted HuR binding to NOX-1 mRNA. Moreover, HuR blockade reduced NOX-1 mRNA stability and AngII + IL-1ß-induced NOX-1 mRNA levels. IL-1ß decreased NOX-4 expression through a transcriptional mechanism that involved response elements situated in the proximal promoter. AngII and/or IL-1ß-induced cell migration were prevented by NOX-1 and HuR blockade and were augmented by NOX-4 overexpression. CONCLUSION: In VSMC HuR-mediated mRNA stabilization is partially responsible for AngII + IL-1ß-dependent NOX-1 expression, whereas transcriptional mechanisms are involved in decreased NOX-4 expression induced by IL-1ß. NOX4 and HuR regulation of NOX-1 contributes to VSMC migration, important in vascular inflammation and remodeling.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Angiotensin II / Myocytes, Smooth Muscle / Interleukin-1beta / ELAV-Like Protein 1 / Muscle, Smooth, Vascular Limits: Animals / Humans Language: En Journal: J Hypertens Year: 2016 Document type: Article Country of publication: Netherlands

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Angiotensin II / Myocytes, Smooth Muscle / Interleukin-1beta / ELAV-Like Protein 1 / Muscle, Smooth, Vascular Limits: Animals / Humans Language: En Journal: J Hypertens Year: 2016 Document type: Article Country of publication: Netherlands