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Abstract 14620: LncExACT1 Acts as a Pivotal Switch Between Physiological and Pathological Cardiac Growth

Authors :
Rodosthenis S. Rodosthenous
Chunyang Xiao
Michael G. Silverman
Saumya Das
Ashish Yeri
Guoping Li
Xiaojun Liu
Amrut V. Ambardekar
Margaret H. Hastings
Lena E Trager
Anthony Rosenzweig
Michael R. Bristow
Haobo Li
Source :
Circulation. 142
Publication Year :
2020
Publisher :
Ovid Technologies (Wolters Kluwer Health), 2020.

Abstract

Rationale: Pathological hypertrophy commonly leads to heart failure (HF) and loss of cardiomyocytes, while physiological hypertrophy protects the heart and enhances cardiomyogenesis. The mechanisms underlying these differences remain unclear. While long noncoding RNAs (lncRNAs) are important in cardiac development and disease, their role in physiological hypertrophy is unknown. Objective: To investigate the role of lncRNAs in physiological hypertrophy. Methods and Results: Mice underwent voluntary wheel running for eight weeks or transverse aortic constriction (TAC) for two or ten weeks. RNAseq identified a novel set of lncRNAs altered in exercised hearts, which we termed l ong n on c oding Ex ercise- A ssociated C ardiac T ranscripts (lncExACTs). lncExACT1 was highly conserved and uniquely downregulated in exercised hearts but upregulated in pathological animal models and hearts from HF patients vs controls (1.8-fold; p p =0.032, N=16) and preserved ejection fraction (3.4-fold; p =0.006, N=18). In mice, AAV9 lncExACT1 overexpression increased cardiac lncExACT1 7-fold at 16 weeks and increased heart (HW) and lung (LW) weight relative to tibial length (TL), reduced fractional shortening (FS) and increased relative wall thickness (RWT) ( p p p Conclusions: lncExACT1 acts as a master switch toggling the heart between physiological and pathological growth and provides a potentially tractable therapeutic target for harnessing the beneficial effects of exercise.

Details

ISSN :
15244539 and 00097322
Volume :
142
Database :
OpenAIRE
Journal :
Circulation
Accession number :
edsair.doi...........7b0966a7854c789ea12f92b40e3c205f
Full Text :
https://doi.org/10.1161/circ.142.suppl_3.14620