A perinuclear calcium compartment regulates cardiac myocyte hypertrophy
The pleiotropic Ca2+/calmodulin-dependent phosphatase calcineurin is a key regulator of pathological cardiac myocyte hypertrophy. The selective activation of hypertrophic calcineurin signaling under stress conditions has been attributed to compartmentation of Ca2+ signaling in cardiac myocytes. Here...
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Veröffentlicht in: | Journal of molecular and cellular cardiology 2022-11, Vol.172, p.26-40 |
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Sprache: | eng |
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Zusammenfassung: | The pleiotropic Ca2+/calmodulin-dependent phosphatase calcineurin is a key regulator of pathological cardiac myocyte hypertrophy. The selective activation of hypertrophic calcineurin signaling under stress conditions has been attributed to compartmentation of Ca2+ signaling in cardiac myocytes. Here, perinuclear signalosomes organized by the scaffold protein muscle A-Kinase Anchoring Protein β (mAKAPβ/AKAP6β) are shown to orchestrate local Ca2+ transients, inducing calcineurin-dependent NFATc nuclear localization and myocyte hypertrophy in response to β-adrenergic receptor activation. Fluorescent biosensors for Ca2+ and calcineurin and protein kinase A (PKA) activity, both diffusely expressed and localized by nesprin-1α to the nuclear envelope, are used to define an autonomous mAKAPβ signaling compartment in adult and neonatal rat ventricular myocytes. Notably, β-adrenergic-stimulated perinuclear Ca2+ and PKA and CaN activity transients depended upon mAKAPβ expression, while Ca2+ elevation and PKA and CaN activity in the cytosol were mAKAPβ independent. Buffering perinuclear cAMP and Ca2+ prevented calcineurin-dependent NFATc nuclear translocation and myocyte hypertrophy, without affecting cardiac myocyte contractility. Additional findings suggest that the perinuclear Ca2+ transients were mediated by signalosome-associated ryanodine receptors regulated by local PKA phosphorylation. These results demonstrate the existence of a functionally independent Ca2+ signaling compartment in the cardiac myocyte regulating hypertrophy and provide a premise for targeting mAKAPβ signalosomes to prevent selectively cardiac hypertrophy in disease.
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•The scaffold protein muscle A-Kinase Anchoring Protein B (mAKAPB/AKAP6B) orchestrates a perinuclear Ca2+ transient.•The perinuclear Ca2+ transient mediates calcineurin (CaN)-dependent NFATc nuclear localization and myocyte hypertrophy.•The perinuclear Ca2+ transients, PKA, and CaN activity depend upon mAKAP expression.•Cytosolic Ca2+ elevation, PKA and CaN activity is mAKAP expression independent.•Buffering perinuclear cAMP and Ca2+ ablates CaN activity and myocyte hypertrophy, without affecting myocyte contractility.•Perinuclear Ca2+ transients were mediated by signalosome-associated ryanodine receptors through local PKA phosphorylation |
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ISSN: | 0022-2828 1095-8584 |
DOI: | 10.1016/j.yjmcc.2022.07.007 |