The Ca2+-activated cation channel TRPM4 is a positive regulator of pressure overload-induced cardiac hypertrophy

Author:

Guo Yang123,Yu Ze-Yan123,Wu Jianxin1,Gong Hutao2,Kesteven Scott23,Iismaa Siiri E13,Chan Andrea Y1,Holman Sara1,Pinto Silvia45,Pironet Andy45,Cox Charles D13,Graham Robert M13,Vennekens Rudi45,Feneley Michael P236,Martinac Boris13ORCID

Affiliation:

1. Molecular Cardiology and Biophysics Division, Victor Chang Cardiac Research Institute, Sydney, Australia

2. Cardiac Physiology and Transplantation Division, Victor Chang Cardiac Research Institute, Sydney, Australia

3. St Vincent’s Clinical School, Faculty of Medicine, University of New South Wales, Sydney, Australia

4. Laboratory of Ion Channel Research, Department of Molecular and Cellular Medicine, Katholieke Universiteit Leuven, Leuven, Belgium

5. TRP Research Platform Leuven (TRPLe), Katholieke Universiteit Leuven, Leuven, Belgium

6. Department of Cardiology, St Vincent’s Hospital, Sydney, Australia

Abstract

Pathological left ventricular hypertrophy (LVH) occurs in response to pressure overload and remains the single most important clinical predictor of cardiac mortality. The molecular pathways in the induction of pressure overload LVH are potential targets for therapeutic intervention. Current treatments aim to remove the pressure overload stimulus for LVH, but do not completely reverse adverse cardiac remodelling. Although numerous molecular signalling steps in the induction of LVH have been identified, the initial step by which mechanical stretch associated with cardiac pressure overload is converted into a chemical signal that initiates hypertrophic signalling remains unresolved. In this study, we show that selective deletion of transient receptor potential melastatin 4 (TRPM4) channels in mouse cardiomyocytes results in an approximately 50% reduction in the LVH induced by transverse aortic constriction. Our results suggest that TRPM4 channel is an important component of the mechanosensory signalling pathway that induces LVH in response to pressure overload and represents a potential novel therapeutic target for the prevention of pathological LVH.

Funder

National Health and Medical Research Council

Fonds Wetenschappelijk Onderzoek

KU Leuven

NSW Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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