GENETIC AND PHARMACOLOGIC ACTIVATION OF BECLIN1 PREVENTSALDOSTERONE-INDUCED CARDIOVASCULAR DAMAGE

Aldosterone promotes endothelial dysfunction and cardiovascular injury through mineralocorticoid receptor (MR) activation. Autophagy is essential for endothelial homeostasis, yet its role in aldosterone-mediated vascular dysfunction remains unclear. We tested whether aldosterone impairs autophagic flux and whether restoring autophagy via Beclin1 (BCN1) activation protects vascular and cardiac function. Endothelial and vascular responses to aldosterone were assessed in wild-type mice, BCN1 gain-of-function mice (Becn1), and mice treated with spermidine or a BCN1-activating TB-peptide. Vascular function, nitric oxide (NO)/reactive oxygen species (ROS) production, autophagy markers, endothelial migration, and cardiac fibrosis were evaluated using wire myography, fluorescence assays, Western blotting, confocal microscopy, migration assays, and histology. Aldosterone impaired endothelium-dependent relaxation, decreased NO, increased ROS, and impaired autophagic processing in an MR-dependent manner, as indicated by an increased LC3-II/LC3-I ratio, p62 accumulation, and reduced phosphorylated BCN1 expression. Spermidine restored endothelial function and normalized NO and ROS levels. BCN1 gain-of-function mice were protected from aldosterone-induced endothelial dysfunction and exhibited reduced coronary and myocardial fibrosis. TB-peptide activation of BCN1 enhanced autophagic flux, improved vascular function, decreased cardiac fibrosis, and rescued endothelial migration impaired by aldosterone. Aldosterone induces endothelial dysfunction by suppressing autophagic flux through MR activation. Genetic or pharmacologic enhancement of BCN1-dependent autophagy restores endothelial homeostasis and prevents vascular and cardiac injury, identifying autophagy activation as a promising therapeutic approach for cardiovascular diseases associated with mineralocorticoid excess.

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Publication Details

Journal
Clinical Science
Published
2026-09-07
DOI
https://doi.org/10.1042/cs20260969
Primary Topic
Hormonal Regulation and Hypertension
Type
article
Field-Weighted Citation Impact
0.00

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article

GENETIC AND PHARMACOLOGIC ACTIVATION OF BECLIN1 PREVENTSALDOSTERONE-INDUCED CARDIOVASCULAR DAMAGE

Débora M. Cerqueira, Jacqueline Ho, Juliano Alves, Rafael M. Costa et al.
Clinical Science
Hormonal Regulation and Hypertension
article

GENETIC AND PHARMACOLOGIC ACTIVATION OF BECLIN1 PREVENTSALDOSTERONE-INDUCED CARDIOVASCULAR DAMAGE

Débora M. Cerqueira, Jacqueline Ho, Juliano Alves, Rafael M. Costa, Rita C. Tostes, Ariane Bruder, Thiago Bruder-Nascimento, Tyler Beling, Sergio Guerrero, Luis Oliveira de Moraes
article en

Abstract

Aldosterone promotes endothelial dysfunction and cardiovascular injury through mineralocorticoid receptor (MR) activation. Autophagy is essential for endothelial homeostasis, yet its role in aldosterone-mediated vascular dysfunction remains unclear. We tested whether aldosterone impairs autophagic flux and whether restoring autophagy via Beclin1 (BCN1) activation protects vascular and cardiac function. Endothelial and vascular responses to aldosterone were assessed in wild-type mice, BCN1 gain-of-function mice (Becn1), and mice treated with spermidine or a BCN1-activating TB-peptide. Vascular function, nitric oxide (NO)/reactive oxygen species (ROS) production, autophagy markers, endothelial migration, and cardiac fibrosis were evaluated using wire myography, fluorescence assays, Western blotting, confocal microscopy, migration assays, and histology. Aldosterone impaired endothelium-dependent relaxation, decreased NO, increased ROS, and impaired autophagic processing in an MR-dependent manner, as indicated by an increased LC3-II/LC3-I ratio, p62 accumulation, and reduced phosphorylated BCN1 expression. Spermidine restored endothelial function and normalized NO and ROS levels. BCN1 gain-of-function mice were protected from aldosterone-induced endothelial dysfunction and exhibited reduced coronary and myocardial fibrosis. TB-peptide activation of BCN1 enhanced autophagic flux, improved vascular function, decreased cardiac fibrosis, and rescued endothelial migration impaired by aldosterone. Aldosterone induces endothelial dysfunction by suppressing autophagic flux through MR activation. Genetic or pharmacologic enhancement of BCN1-dependent autophagy restores endothelial homeostasis and prevents vascular and cardiac injury, identifying autophagy activation as a promising therapeutic approach for cardiovascular diseases associated with mineralocorticoid excess.

Clinical Science
Universidade de Ribeirão Preto (BR), University of Pittsburgh (US), Universidade de São Paulo (BR), Universidade Federal de Jataí (BR), University of South Alabama (US)
University of Pittsburgh, University of South Alabama, Fundação de Amparo à Pesquisa do Estado de São Paulo, National Heart, Lung, and Blood Institute
Good health and well-being
Openalex Percentile: Top 28%
Hormonal Regulation and Hypertension
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