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November 5, 2013Circulation145 citationsOpen Access

Enhanced Expression of β3-Adrenoceptors in Cardiac Myocytes Attenuates Neurohormone-Induced Hypertrophic Remodeling Through Nitric Oxide Synthase

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CBCatharina BelgeJHJoanna HammondEDEmilie Dubois‐Deruy

Key Result

Cardiac-specific overexpression of β3-AR inhibited the hypertrophic response to neurohormonal stimulation in vivo and in vitro through a nitric oxide synthase-mediated mechanism.

Structured PICO

P
Population
Mice with cardiac myocyte-specific expression of human β3-AR and wild-type littermates evaluated for myocardial remodeling in response to neurohormonal stimulation.
I
Intervention
Isoproterenol (Iso) or Angiotensin II (Ang II) stimulation; adenoviral overexpression of β3-AR
C
Comparator
Wild-type (WT) littermates; baseline conditions
O
Outcome
Myocardial remodeling (hypertrophy and fibrosis) in response to neurohormonal stimulationsurrogate

Cardiac-specific overexpression of β3-AR protects against neurohormone-induced hypertrophic remodeling via a nitric oxide synthase-mediated mechanism.

Abstract

BACKGROUND: β1-2-adrenergic receptors (AR) are key regulators of cardiac contractility and remodeling in response to catecholamines. β3-AR expression is enhanced in diseased human myocardium, but its impact on remodeling is unknown. METHODS AND RESULTS: Mice with cardiac myocyte-specific expression of human β3-AR (β3-TG) and wild-type (WT) littermates were used to compare myocardial remodeling in response to isoproterenol (Iso) or Angiotensin II (Ang II). β3-TG and WT had similar morphometric and hemodynamic parameters at baseline. β3-AR colocalized with caveolin-3, endothelial nitric oxide synthase (NOS) and neuronal NOS in adult transgenic myocytes, which constitutively produced more cyclic GMP, detected with a new transgenic FRET sensor. Iso and Ang II produced hypertrophy and fibrosis in WT mice, but not in β3-TG mice, which also had less re-expression of fetal genes and transforming growth factor β1. Protection from Iso-induced hypertrophy was reversed by nonspecific NOS inhibition at low dose Iso, and by preferential neuronal NOS inhibition at high-dose Iso. Adenoviral overexpression of β3-AR in isolated cardiac myocytes also increased NO production and attenuated hypertrophy to Iso and phenylephrine. Hypertrophy was restored on NOS or protein kinase G inhibition. Mechanistically, β3-AR overexpression inhibited phenylephrine-induced nuclear factor of activated T-cell activation. CONCLUSIONS: Cardiac-specific overexpression of β3-AR does not affect cardiac morphology at baseline but inhibits the hypertrophic response to neurohormonal stimulation in vivo and in vitro, through a NOS-mediated mechanism. Activation of the cardiac β3-AR pathway may provide future therapeutic avenues for the modulation of hypertrophic remodeling.

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Cite This Study

Belge et al. (2013) studied Cardiac hypertrophy and remodeling. Cardiac myocyte-specific expression of human β3-AR vs. Wild-type (WT) littermates was evaluated on Hypertrophy and fibrosis in response to isoproterenol or Angiotensin II. Cardiac-specific overexpression of β3-AR inhibited the hypertrophic response to neurohormonal stimulation in vivo and in vitro through a nitric oxide synthase-mediated mechanism.

synapsesocial.com/papers/6a6b797034b735385cb3bd6bhttps://doi.org/10.1161/circulationaha.113.004940
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