BACKGROUND: Calcineurin (CnA) is important in the regulation of myocardial hypertrophy. We demonstrated that targeted proteolysis of the CnA autoinhibitory domain under pathological myocardial workload leads to increased CnA activity in human myocardium. Here, we investigated the proteolytic mechanism leading to activation of CnA. METHODS AND RESULTS: In patients with diseased myocardium, we found strong nuclear translocation of CnA. In contrast, in normal human myocardium, there was a cytosolic distribution of CnA. Stimulation of rat cardiomyocytes with angiotensin (Ang) II increased calpain activity significantly (433+/-11%; P<0.01; n=6) and caused proteolysis of the autoinhibitory domain of CnA. Inhibition of calpain by a membrane-permea...
The calcineurin (CaN) enzyme–transcriptional pathway is critically involved in hypertrophy of heart ...
Background—Cardiac hypertrophy is a fundamental adaptive response to hemodynamic overload; how mecha...
Ca2+-calcineurin-NFAT signaling plays a major role in promoting pathological cardiac hypertrophy. He...
BACKGROUND: In animal models, increased signaling through the calcineurin pathway has been shown to ...
Background- In animal models, increased signaling through the calcineurin pathway has been shown to ...
The time that transcription factors remain nuclear is a major determinant for transcriptional activi...
© 2016 Elsevier LtdThe calcium-activated protein phosphatase, calcineurin, lies at the intersection ...
Background—Vascular hypertension resulting in increased cardiac load is associated with left ventric...
Previous studies have demonstrated that activation of calcineurin induces pathological cardiac hyper...
Previous studies have demonstrated that activation of calcineurin induces pathological cardiac hyper...
AbstractIn response to numerous pathologic stimuli, the myocardium undergoes a hypertrophic response...
ObjectivesWe investigated whether lipopolysaccharide (LPS), a proximate cause of inflammation, activ...
nine phosphatase that is ubiquitously expressed and plays an important role in transducing Ca2-depen...
1 The calcineurin (CaN) enzyme-transcriptional pathway is critically involved in hypertrophy of hear...
Cardiac myosin binding protein-C (cMyBP-C) phosphorylation is essential for normal heart function an...
The calcineurin (CaN) enzyme–transcriptional pathway is critically involved in hypertrophy of heart ...
Background—Cardiac hypertrophy is a fundamental adaptive response to hemodynamic overload; how mecha...
Ca2+-calcineurin-NFAT signaling plays a major role in promoting pathological cardiac hypertrophy. He...
BACKGROUND: In animal models, increased signaling through the calcineurin pathway has been shown to ...
Background- In animal models, increased signaling through the calcineurin pathway has been shown to ...
The time that transcription factors remain nuclear is a major determinant for transcriptional activi...
© 2016 Elsevier LtdThe calcium-activated protein phosphatase, calcineurin, lies at the intersection ...
Background—Vascular hypertension resulting in increased cardiac load is associated with left ventric...
Previous studies have demonstrated that activation of calcineurin induces pathological cardiac hyper...
Previous studies have demonstrated that activation of calcineurin induces pathological cardiac hyper...
AbstractIn response to numerous pathologic stimuli, the myocardium undergoes a hypertrophic response...
ObjectivesWe investigated whether lipopolysaccharide (LPS), a proximate cause of inflammation, activ...
nine phosphatase that is ubiquitously expressed and plays an important role in transducing Ca2-depen...
1 The calcineurin (CaN) enzyme-transcriptional pathway is critically involved in hypertrophy of hear...
Cardiac myosin binding protein-C (cMyBP-C) phosphorylation is essential for normal heart function an...
The calcineurin (CaN) enzyme–transcriptional pathway is critically involved in hypertrophy of heart ...
Background—Cardiac hypertrophy is a fundamental adaptive response to hemodynamic overload; how mecha...
Ca2+-calcineurin-NFAT signaling plays a major role in promoting pathological cardiac hypertrophy. He...