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Disruption of Rho signaling results in progressive atrioventricular conduction defects while ventricular function
Lei Wei1, George E Taffet, Dirar S Khoury
1Cardiovascular Sciences Section, Department of Medicine, Baylor College of Medicine and The Methodist Hospital, Houston, Texas 77030, USA. lwei@bcm.tmc.edu
Insights
Inhibition of Rho GTPases in the heart caused atrial arrhythmias and AV block, but preserved ventricular function. This highlights their critical role in cardiac conduction, not ventricular contractility.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Cardiac Electrophysiology
Background:
- RhoA and Rac1 are implicated in cardiac myocyte hypertrophy signaling.
- The functional consequences of inhibiting Rho GTPase activity in the heart remain largely unevaluated.
Purpose of the Study:
- To investigate the impact of cardiac-specific Rho GTPase inhibition on cardiac function and electrophysiology.
- To determine the role of Rho GTPases in maintaining ventricular contractile function and cardiac conduction.
Main Methods:
- Cardiac-specific expression of Rho GDP dissociation inhibitor alpha (GDIalpha) using the alpha-myosin heavy-chain promoter in transgenic mice.
- Assessment of cardiac function via echocardiography and electrophysiological studies (ECG, intracardiac recordings).
- Evaluation of connexin 40 expression levels.
Main Results:
- Transgenic mice exhibited atrial arrhythmias and mild ventricular hypertrophy.
- Left ventricular systolic and diastolic function were preserved despite hypertrophy.
- Progressive atrioventricular (AV) block developed, correlating with decreased connexin 40 expression.
Conclusions:
- Rho GTPases are not essential for maintaining basal ventricular contractile function.
- Rho GTPases play a critical role in regulating atrioventricular (AV) conduction.
- Downregulation of connexin 40 may underlie the observed conduction defects.
Abstract:
Recent studies suggest that RhoA and Rac1 mediate hypertrophic signals in cardiac myocyte hypertrophy. However, effects on cardiac function caused by inhibition of their activity in the heart have yet to be evaluated. Cardiac-specific inhibition of Rho family protein activities was achieved by expressing Rho GDIalpha, an endogenous specific GDP dissociation inhibitor for Rho family proteins, using the alpha-myosin heavy-chain promoter. Increased expression of Rho GDIalpha led to atrial arrhythmias and mild ventricular hypertrophy in adult mice (4-7 months). However, left ventricular systolic and diastolic function was largely preserved before and after the development of cardiac hypertrophy, indicating that Rho GTPases are not required to maintain ventricular contractile function under basal physiological condition. Electrocardiography and intracardiac electrophysiological studies revealed first-degree atrioventricular (AV) block in the transgenic heart at 1 week of age, which further progressed into second-degree AV block at 4 weeks of age before the development of cardiac hypertrophy. Expression of connexin 40 dramatically decreased from 1 week to 4 weeks of age in the transgenic heart, which may contribute in part to the conduction defects in the transgenic mice. This study provides novel evidence for an important role of Rho GTPases in regulating AV conduction.
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