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August 20, 2013Cardiovascular Research82 citationsOpen Access

NO-dependent CaMKII activation during β-adrenergic stimulation of cardiac muscle

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DGDaniel A. GutierrezMFMiguel Fernández-TenorioJOJakob Ogrodnik

Key Result

β-adrenergic stimulation of cardiomyocytes increases endogenous NO production, leading to NO-dependent activation of CaMKII and a subsequent increase in diastolic Ca2+ spark frequency.

Structured PICO

P
Population
Single cardiomyocytes
I
Intervention
β-adrenergic receptor (β-AR) stimulation and NO donor GSNO
C
Comparator
Baseline conditions and CaMKII inhibitors (KN-93 and AIP)
O
Outcome
Mechanisms of CaMKII activation and elevated Ca(2+) spark frequencies during β-AR stimulation in diastolic conditionssurrogate

Demonstrates a novel NO-dependent pathway for CaMKII activation during β-adrenergic stress, providing a mechanistic basis for arrhythmogenic diastolic calcium release.

Abstract

AIMS: During β-adrenergic receptor (β-AR) stimulation, phosphorylation of cardiomyocyte ryanodine receptors by protein kinases may contribute to an increased diastolic Ca(2+) spark frequency. Regardless of prompt activation of protein kinase A during β-AR stimulation, this appears to rely more on activation of Ca(2+)/calmodulin-dependent protein kinase II (CaMKII), by a not yet identified signalling pathway. The goal of the present study was to identify and characterize the mechanisms which lead to CaMKII activation and elevated Ca(2+) spark frequencies during β-AR stimulation in single cardiomyocytes in diastolic conditions. METHODS AND RESULTS: Confocal imaging revealed that β-AR stimulation increases endogenous NO production in cardiomyocytes, resulting in NO-dependent activation of CaMKII and a subsequent increase in diastolic Ca(2+) spark frequency. These changes of spark frequency could be mimicked by exposure to the NO donor GSNO and were sensitive to the CaMKII inhibitors KN-93 and AIP. In vitro, CaMKII became nitrosated and its activity remained increased independent of Ca(2+) in the presence of GSNO, as assessed with biochemical assays. CONCLUSIONS: β-AR stimulation of cardiomyocytes may activate CaMKII by a novel direct pathway involving NO, without requiring Ca(2+) transients. This crosstalk between two established signalling pathways may contribute to arrhythmogenic diastolic Ca(2+) release and Ca(2+) waves during adrenergic stress, particularly in combination with cardiac diseases. In addition, NO-dependent activation of CaMKII is likely to have repercussions in many cellular signalling systems and cell types.

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Cite This Study

Gutierrez et al. (2013) studied this question. β-adrenergic receptor stimulation was evaluated on CaMKII activation and diastolic Ca(2+) spark frequency. β-adrenergic stimulation of cardiomyocytes increases endogenous NO production, leading to NO-dependent activation of CaMKII and a subsequent increase in diastolic Ca2+ spark frequency.

synapsesocial.com/papers/6a21b28b4f27a676ef8ba91ehttps://doi.org/10.1093/cvr/cvt201
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