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LncRNA GAS5 regulates vascular smooth muscle cell cycle arrest and apoptosis via p53 pathway.

Authors :
Tang, Rui
Mei, Xiaohan
Wang, Yung-Chun
Cui, Xiao-Bing
Zhang, Gui
Li, Wenjing
Chen, Shi-You
Source :
BBA: Molecular Basis of Disease. Sep2019, Vol. 1865 Issue 9, p2516-2525. 10p.
Publication Year :
2019

Abstract

Vascular remodeling is a pathological process following cardiovascular intervention. Vascular smooth muscle cells (VSMC) play a critical role in the vascular remodeling. Long noncoding RNAs (lncRNA) are a class of gene regulators functioning through various mechanisms in physiological and pathological conditions. By using cultured VSMC and rat carotid artery balloon injury model, we found that lncRNA growth arrest specific 5 (GAS5) serves as a negative regulator for VSMC survival in vascular remodeling. By manipulating GAS5 expression via adenoviral overexpression or short hairpin RNA knockdown, we found that GAS5 suppresses VSMC proliferation while promoting cell cycle arrest and inducing cell apoptosis. Mechanistically, GAS5 directly binds to p53 and p300, stabilizes p53-p300 interaction, and thus regulates VSMC cell survival via induction of p53-downstream target genes. Importantly, local delivery of GAS5 via adenoviral vector suppresses balloon injury-induced neointima formation along with an increased expression of p53 and apoptosis in neointimal SMCs. Our study demonstrated for the first time that GAS5 negatively impacts VSMC survival via activation the p53 pathway during vascular remodeling. • LncRNA GAS5 is a negative regulator for vascular smooth muscle cell (SMC) survival. • GAS5 suppresses SMC proliferation while promoting cell cycle arrest and inducing cell apoptosis. • GAS5 regulates SMC survival by stabilizing p53-p300 interaction to induce p53-downstream genes. • GAS5 promotes VSMC apoptosis via activating p53 pathway during vascular remodeling. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09254439
Volume :
1865
Issue :
9
Database :
Academic Search Index
Journal :
BBA: Molecular Basis of Disease
Publication Type :
Academic Journal
Accession number :
137324053
Full Text :
https://doi.org/10.1016/j.bbadis.2019.05.022