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November 13, 2001Circulation88 citations

Augmentation of Cardiac Contractility Mediated by the Human β 3 -Adrenergic Receptor Overexpressed in the Hearts of Transgenic Mice

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TKTrudy A. KohoutHTHideyuki TakaokaPMPatricia McDonald

Structured PICO

P
Population
Transgenic mice with cardiac-specific overexpression of the human beta3-adrenergic receptor (TGbeta3 mice) and wild-type mice
I
Intervention
Stimulation with selective human beta3AR agonist L-755,507 or isoproterenol (after propranolol blockade of endogenous beta1- and beta2ARs)
C
Comparator
Wild-type mice receiving the same stimulation
O
Outcome
Cardiac contractility (measured by hemodynamic characterization, pressure-volume-loop analysis, and echocardiography)surrogate

Cardiac overexpression of human beta3-adrenergic receptors in mice results in positive inotropy upon stimulation with a beta3AR agonist, mediated by Gs coupling and adenylyl cyclase activation.

Abstract

BACKGROUND: Stimulation of beta(1)- and beta(2)-adrenergic receptors (ARs) in the heart results in positive inotropy. In contrast, it has been reported that the beta(3)AR is also expressed in the human heart and that its stimulation leads to negative inotropic effects. METHODS AND RESULTS: To better understand the role of beta(3)ARs in cardiac function, we generated transgenic mice with cardiac-specific overexpression of 330 fmol/mg protein of the human beta(3)AR (TGbeta(3) mice). Hemodynamic characterization was performed by cardiac catheterization in closed-chest anesthetized mice, by pressure-volume-loop analysis, and by echocardiography in conscious mice. After propranolol blockade of endogenous beta(1)- and beta(2)ARs, isoproterenol resulted in an increase in contractility in the TGbeta(3) mice (30%), with no effect in wild-type mice. Similarly, stimulation with the selective human beta(3)AR agonist L-755,507 significantly increased contractility in the TGbeta(3) mice (160%), with no effect in wild-type mice, as determined by hemodynamic measurements and by end-systolic pressure-volume relations. The underlying mechanism of the positive inotropy incurred with L-755,507 in the TGbeta(3) mice was investigated in terms of beta(3)AR-G-protein coupling and adenylyl cyclase activation. Stimulation of cardiac membranes from TGbeta(3) mice with L-755,507 resulted in a pertussis toxin-insensitive 1.33-fold increase in (35)SGTPgammaS loading and a 1.6-fold increase in adenylyl cyclase activity. CONCLUSIONS: Cardiac overexpression of human beta(3)ARs results in positive inotropy only on stimulation with a beta(3)AR agonist. Overexpressed beta(3)ARs couple to G(s) and activate adenylyl cyclase on agonist stimulation.

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Cite This Study

Kohout et al. (2001) studied this question.

synapsesocial.com/papers/6a70b30cf44fa9f079de634fhttps://doi.org/10.1161/hc4501.098933
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