Acute heart failure with cardiomyocyte atrophy induced in adult mice by ablation of cardiac myosin light chain kinase
Cardiovascular Research

Abstract
Under pressure overload, initial adaptive hypertrophy of the heart is followed by cardiomyocyte elongation, reduced contractile force, and failure. The mechanisms governing the transition to failure are not fully understood. Pressure overload reduced cardiac myosin light chain kinase (cMLCK) by ∼80% within 1 week and persists. Knockdown of cMLCK in cardiomyocytes resulted in reduced cardiac contractility and sarcomere disorganization. Thus, we hypothesized that acute reduction of cMLCK may be causative for reduced contractility and cardiomyocyte remodelling during the transition from compensated to decompensated cardiac hypertrophy.
To mimic acute cMLCK reduction in adult hearts, the floxed-
Our results, using a new mouse model mimicking an acute reduction of cMLCK, suggest that cMLCK plays a pivotal role in the transition from compensated to decompensated hypertrophy via sarcomeric disorganization.
Contributors

Michael T. Massengill
Author

Hassan M. Ashraf
Author

Rajib R. Chowdhury
Author

Stephen M. Chrzanowski
Author

Jeena Kar
Author

Sonisha A. Warren
Author

Glenn A. Walter
Author

Huadong Zeng
Author

Byung-Ho Kang
Author

Robert H. Anderson
Author

Richard L. Moss
Author

Hideko Kasahara
Author
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