Transcriptional Profiling of Human Endothelial Cells Unveils PIEZO1 and Mechanosensitive Gene Regulation by Prooxidant and Inflammatory Inputs

Arenas, German A. and Valenzuela, Jose G. and Peñaloza, Estefanía and Paz, Adolfo A. and Iturriaga, Rodrigo and Saez, Claudia G. and Krause, Bernardo J. (2023) Transcriptional Profiling of Human Endothelial Cells Unveils PIEZO1 and Mechanosensitive Gene Regulation by Prooxidant and Inflammatory Inputs. Antioxidants, 12 (10). p. 1874. ISSN 2076-3921

[thumbnail of antioxidants-12-01874.pdf] Text
antioxidants-12-01874.pdf - Published Version

Download (4MB)

Abstract

PIEZO1 is a mechanosensitive cation channel implicated in shear stress-mediated endothelial-dependent vasorelaxation. Since altered shear stress patterns induce a pro-inflammatory endothelial environment, we analyzed transcriptional profiles of human endothelial cells to determine the effect of altered shear stress patterns and subsequent prooxidant and inflammatory conditions on PIEZO1 and mechanosensitive-related genes (MRG). In silico analyses were validated in vitro by assessing PIEZO1 transcript levels in both the umbilical artery (HUAEC) and vein (HUVEC) endothelium. Transcriptional profiling showed that PIEZO1 and some MRG associated with the inflammatory response were upregulated in response to high (15 dyn/cm2) and extremely high shear stress (30 dyn/cm2) in HUVEC. Changes in PIEZO1 and inflammatory MRG were paralleled by p65 but not KLF or YAP1 transcription factors. Similarly, PIEZO1 transcript levels were upregulated by TNF-alpha (TNF-α) in diverse endothelial cell types, and pre-treatment with agents that prevent p65 translocation to the nucleus abolished PIEZO1 induction. ChIP-seq analysis revealed that p65 bonded to the PIEZO1 promoter region, an effect increased by the stimulation with TNF-α. Altogether this data showed that NF-kappa B activation via p65 signaling regulates PIEZO1 expression, providing a new molecular link for prooxidant and inflammatory responses and mechanosensitive pathways in the endothelium.

Item Type: Article
Subjects: Archive Digital > Agricultural and Food Science
Depositing User: Unnamed user with email support@archivedigit.com
Date Deposited: 16 Dec 2023 05:15
Last Modified: 16 Dec 2023 05:15
URI: http://eprints.ditdo.in/id/eprint/1935

Actions (login required)

View Item
View Item