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July 25, 2008Circulation Research133 citations

RGS4 Regulates Parasympathetic Signaling and Heart Rate Control in the Sinoatrial Node

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CCCarlo CifelliRRRobert A. RoseHZHangjun Zhang

Key Result

RGS4-null mice exhibited increased bradycardic responses to parasympathetic agonists and lower baseline heart rates compared to wild-type animals, establishing RGS4 as an inhibitor of parasympathetic signaling.

Structured PICO

P
Population
RGS4-null and wild-type mice used to study the regulation of parasympathetic tone in the sinoatrial node.
E
Exposure
RGS4 gene knockout (RGS4-null) and exposure to parasympathetic agonists (carbachol, atropine)
C
Comparator
Wild-type mice
O
Outcome
Heart rate response to parasympathetic agonists and baseline heart ratesurrogate

RGS4 plays an important role in regulating sinus rhythm by inhibiting parasympathetic signaling and I(KACh) activity in the sinoatrial node.

Abstract

Heart rate is controlled by the opposing activities of sympathetic and parasympathetic inputs to pacemaker myocytes in the sinoatrial node (SAN). Parasympathetic activity on nodal myocytes is mediated by acetylcholine-dependent stimulation of M(2) muscarinic receptors and activation of Galpha(i/o) signaling. Although regulators of G protein signaling (RGS) proteins are potent inhibitors of Galpha(i/o) signaling in many tissues, the RGS protein(s) that regulate parasympathetic tone in the SAN are unknown. Our results demonstrate that RGS4 mRNA levels are higher in the SAN compared to right atrium. Conscious freely moving RGS4-null mice showed increased bradycardic responses to parasympathetic agonists compared to wild-type animals. Moreover, anesthetized RGS4-null mice had lower baseline heart rates and greater heart rate increases following atropine administration. Retrograde-perfused hearts from RGS4-null mice showed enhanced negative chronotropic responses to carbachol, whereas SAN myocytes showed greater sensitivity to carbachol-mediated reduction in the action potential firing rate. Finally, RGS4-null SAN cells showed decreased levels of G protein-coupled inward rectifying potassium (GIRK) channel desensitization and altered modulation of acetylcholine-sensitive potassium current (I(KACh)) kinetics following carbachol stimulation. Taken together, our studies establish that RGS4 plays an important role in regulating sinus rhythm by inhibiting parasympathetic signaling and I(KACh) activity.

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Cite This Study

Cifelli et al. (2008) studied Heart rate control and parasympathetic signaling. RGS4 knockout (RGS4-null mice) vs. Wild-type mice was evaluated on Bradycardic response to parasympathetic agonists and baseline heart rate. RGS4-null mice exhibited increased bradycardic responses to parasympathetic agonists and lower baseline heart rates compared to wild-type animals, establishing RGS4 as an inhibitor of parasympathetic signaling.

synapsesocial.com/papers/6a6f3f306c240de38cdb6d15https://doi.org/10.1161/circresaha.108.180984
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