Science · 2010 · 548 citations · 26 references
Cardiac MuscleHeart FailureCardiovascular PharmacologyCellular PhysiologyRat ModelMolecular PharmacologyDisease PathophysiologySpatial LocalizationCell SignalingCardiologyMolecular PhysiologyBiochemistryG Protein-coupled ReceptorReceptor (Biochemistry)PharmacologyCell BiologySignal TransductionPhysiologyCardiovascular PhysiologyMedicineAlpha-adrenergic Pharmacology
Beta1‑ and beta2‑adrenergic receptors on cardiomyocytes regulate cardiac function and heart failure through cAMP signaling, but the significance of their spatial localization remains unclear. Using nanoscale live‑cell scanning ion conductance and FRET microscopy, the authors showed that in healthy cardiomyocytes beta2‑AR–induced cAMP signals are confined to deep transverse tubules while beta1‑AR signals are spread across the cell surface. In heart‑failure cardiomyocytes, beta2‑ARs relocate from transverse tubules to the cell crest, producing diffuse cAMP signaling and altering compartmentation, which may contribute to the failing myocardial phenotype.
The beta1- and beta2-adrenergic receptors (betaARs) on the surface of cardiomyocytes mediate distinct effects on cardiac function and the development of heart failure by regulating production of the second messenger cyclic adenosine monophosphate (cAMP). The spatial localization in cardiomyocytes of these betaARs, which are coupled to heterotrimeric guanine nucleotide-binding proteins (G proteins), and the functional implications of their localization have been unclear. We combined nanoscale live-cell scanning ion conductance and fluorescence resonance energy transfer microscopy techniques and found that, in cardiomyocytes from healthy adult rats and mice, spatially confined beta2AR-induced cAMP signals are localized exclusively to the deep transverse tubules, whereas functional beta1ARs are distributed across the entire cell surface. In cardiomyocytes derived from a rat model of chronic heart failure, beta2ARs were redistributed from the transverse tubules to the cell crest, which led to diffuse receptor-mediated cAMP signaling. Thus, the redistribution of beta(2)ARs in heart failure changes compartmentation of cAMP and might contribute to the failing myocardial phenotype.
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The Scanning Ion-Conductance Microscope
Paul K. Hansma, B. Drake, Othmar Marti et al. · Science · 1989 · 832 citations