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RGS3L allows for an M 2 muscarinic receptor-mediated RhoA-dependent inotropy in cardiomyocytes.

Authors :
Levay MK
Krobert KA
Vogt A
Ahmad A
Jungmann A
Neuber C
Pasch S
Hansen A
Müller OJ
Lutz S
Wieland T
Source :
Basic research in cardiology [Basic Res Cardiol] 2022 Mar 01; Vol. 117 (1), pp. 8. Date of Electronic Publication: 2022 Mar 01.
Publication Year :
2022

Abstract

The role and outcome of the muscarinic M <subscript>2</subscript> acetylcholine receptor (M <subscript>2</subscript> R) signaling in healthy and diseased cardiomyocytes is still a matter of debate. Here, we report that the long isoform of the regulator of G protein signaling 3 (RGS3L) functions as a switch in the muscarinic signaling, most likely of the M <subscript>2</subscript> R, in primary cardiomyocytes. High levels of RGS3L, as found in heart failure, redirect the G <subscript>i</subscript> -mediated Rac1 activation into a G <subscript>i</subscript> -mediated RhoA/ROCK activation. Functionally, this switch resulted in a reduced production of reactive oxygen species (- 50%) in cardiomyocytes and an inotropic response (+ 18%) in transduced engineered heart tissues. Importantly, we could show that an adeno-associated virus 9-mediated overexpression of RGS3L in rats in vivo, increased the contractility of ventricular strips by maximally about twofold. Mechanistically, we demonstrate that this switch is mediated by a complex formation of RGS3L with the GTPase-activating protein p190RhoGAP, which balances the activity of RhoA and Rac1 by altering its substrate preference in cardiomyocytes. Enhancement of this complex formation could open new possibilities in the regulation of the contractility of the diseased heart.<br /> (© 2022. The Author(s).)

Details

Language :
English
ISSN :
1435-1803
Volume :
117
Issue :
1
Database :
MEDLINE
Journal :
Basic research in cardiology
Publication Type :
Academic Journal
Accession number :
35230541
Full Text :
https://doi.org/10.1007/s00395-022-00915-w