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Disturbed flow regulates protein disulfide isomerase A1 expression via microRNA-204

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Autor(es):
Tanaka, Leonardo Y. ; Kumar, Sandeep ; Gutierre, Lucas F. ; Magnun, Celso ; Kajihara, Daniela ; Kang, Dong-Won ; Laurindo, Francisco R. M. ; Jo, Hanjoong
Número total de Autores: 8
Tipo de documento: Artigo Científico
Fonte: FRONTIERS IN PHYSIOLOGY; v. 15, p. 14-pg., 2024-04-04.
Resumo

Redox processes can modulate vascular pathophysiology. The endoplasmic reticulum redox chaperone protein disulfide isomerase A1 (PDIA1) is overexpressed during vascular proliferative diseases, regulating thrombus formation, endoplasmic reticulum stress adaptation, and structural remodeling. However, both protective and deleterious vascular effects have been reported for PDIA1, depending on the cell type and underlying vascular condition. Further understanding of this question is hampered by the poorly studied mechanisms underlying PDIA1 expression regulation. Here, we showed that PDIA1 mRNA and protein levels were upregulated (average 5-fold) in the intima and media/adventitia following partial carotid ligation (PCL). Our search identified that miR-204-5p and miR-211-5p (miR-204/211), two broadly conserved miRNAs, share PDIA1 as a potential target. MiR-204/211 was downregulated in vascular layers following PCL. In isolated endothelial cells, gain-of-function experiments of miR-204 with miR mimic decreased PDIA1 mRNA while having negligible effects on markers of endothelial activation/stress response. Similar effects were observed in vascular smooth muscle cells (VSMCs). Furthermore, PDIA1 downregulation by miR-204 decreased levels of the VSMC contractile differentiation markers. In addition, PDIA1 overexpression prevented VSMC dedifferentiation by miR-204. Collectively, we report a new mechanism for PDIA1 regulation through miR-204 and identify its relevance in a model of vascular disease playing a role in VSMC differentiation. This mechanism may be regulated in distinct stages of atherosclerosis and provide a potential therapeutic target. (AU)

Processo FAPESP: 20/04280-1 - Mecanismos subcelulares envolvidos na convergência entre homeostase mecânica e redox na regulação vascular
Beneficiário:Leonardo Yuji Tanaka
Modalidade de apoio: Bolsas no Brasil - Jovens Pesquisadores
Processo FAPESP: 13/07937-8 - Redoxoma
Beneficiário:Ohara Augusto
Modalidade de apoio: Auxílio à Pesquisa - Centros de Pesquisa, Inovação e Difusão - CEPIDs
Processo FAPESP: 15/15281-0 - Caracterização e mecanismos da sinalização parácrina mediada por microRNAs envolvendo mecanoadaptação dependente da dissulfeto isomerase proteica em células vasculares
Beneficiário:Leonardo Yuji Tanaka
Modalidade de apoio: Bolsas no Exterior - Estágio de Pesquisa - Pós-Doutorado
Processo FAPESP: 18/07230-5 - Mecanismos subcelulares envolvidos na convergência entre homeostase mecânica e redox na regulação vascular
Beneficiário:Leonardo Yuji Tanaka
Modalidade de apoio: Auxílio à Pesquisa - Jovens Pesquisadores