» Articles » PMID: 35133561

MiRNA-122-5p Inhibitor Abolishes Angiotensin II-mediated Loss of Autophagy and Promotion of Apoptosis in Rat Cardiofibroblasts by Modulation of the Apelin-AMPK-mTOR Signaling

Overview
Publisher Springer
Specialties Biology
Cell Biology
Date 2022 Feb 8
PMID 35133561
Authors
Affiliations
Soon will be listed here.
Abstract

MicroRNAs (miRNAs) have emerged as essential regulators that could have pivotal roles in cardiac homeostasis and pathological remodeling of various cardiovascular diseases. We previously demonstrated that miRNA-122-5p overexpression exacerbated the process of vascular hypertrophy, fibrosis, and dysfunction in hypertensive rats and rat aortic adventitial fibroblasts. However, the exact roles and underlying mechanisms of miRNA-122-5p in myocardial fibroblasts remain largely unknown. In this work, neonatal rat cardiofibroblasts (CFs) were isolated and primarily cultured from the hearts of 2- to 3-d-old Sprague-Dawley rats. Stimulation of angiotensin II (Ang II) resulted in marked increases in cellular proliferation and migration and levels of collagen I, collagen III, CTGF, and TGF-β1 in cultured CFs. Furthermore, Ang II led to promoted expression of P62, Bax, and phosphorylated mTOR as well as downregulation of LC3II, beclin-1, and AMPK-phosphorylated levels, thereby contributing to imbalance of autophagy and apoptosis, and cellular injury in CFs, which were significantly ameliorated by treatment with miRNA-122-5p inhibitor. These changes were associated with decreased levels of collagen I, collagen III, CTGF, and TGF-β1. Furthermore, Ang II-induced loss of autophagy and promotion of apoptosis in CFs were prevented by the treatment with Pyr-apelin-13 or AMPK agonist AICAR or mTOR inhibitor rapamycin, respectively. In contrast, administration of miRNA-122-5p mimics and autophagy inhibitor 3-methylademine reversed beneficial roles of Pyr-apelin-13. Collectively, these data indicated that miRNA-122-5p is an essential regulator of autophagy and apoptosis in rat CFs via the apelin/AMPK/mTOR signaling pathway, which may be potentially used as a therapeutic target in myocardial fibrosis and related diseases.

Citing Articles

Biomarkers of Atrial Fibrillation Recurrence in Patients with Paroxysmal or Persistent Atrial Fibrillation Following External Direct Current Electrical Cardioversion.

Demirel O, Berezin A, Mirna M, Boxhammer E, Gharibeh S, Hoppe U Biomedicines. 2023; 11(5).

PMID: 37239123 PMC: 10216298. DOI: 10.3390/biomedicines11051452.


Ang II Controls the Expression of Mapkap1 by miR-375 and Affects the Function of Islet β Cells.

Lin X, Cheng L, Wan Y, Yan Y, Zhang Z, Li X Endocr Metab Immune Disord Drug Targets. 2023; 23(9):1186-1200.

PMID: 36748222 PMC: 10514520. DOI: 10.2174/1871530323666230206121715.


Impact of Exercise and Aging on Mitochondrial Homeostasis in Skeletal Muscle: Roles of ROS and Epigenetics.

Li J, Wang Z, Li C, Song Y, Wang Y, Bo H Cells. 2022; 11(13).

PMID: 35805170 PMC: 9266156. DOI: 10.3390/cells11132086.

References
1.
Bartel D . MicroRNAs: genomics, biogenesis, mechanism, and function. Cell. 2004; 116(2):281-97. DOI: 10.1016/s0092-8674(04)00045-5. View

2.
Chen L, Xu R, Yu H, Chang Q, Zhong J . The ACE2/Apelin Signaling, MicroRNAs, and Hypertension. Int J Hypertens. 2015; 2015:896861. PMC: 4359877. DOI: 10.1155/2015/896861. View

3.
Fan Y, Ma X, Li H, Gao Y, Huang Q, Zhang Y . miR-122 promotes metastasis of clear-cell renal cell carcinoma by downregulating Dicer. Int J Cancer. 2017; 142(3):547-560. DOI: 10.1002/ijc.31050. View

4.
Gao F, Chen J, Zhu H . A potential strategy for treating atherosclerosis: improving endothelial function via AMP-activated protein kinase. Sci China Life Sci. 2018; 61(9):1024-1029. DOI: 10.1007/s11427-017-9285-1. View

5.
Gyongyosi M, Winkler J, Ramos I, Do Q, Firat H, McDonald K . Myocardial fibrosis: biomedical research from bench to bedside. Eur J Heart Fail. 2017; 19(2):177-191. PMC: 5299507. DOI: 10.1002/ejhf.696. View