Cardiac Na/K-ATPase (NKA) is regulated by its accessory protein phospholemman (PLM). Whereas kinase-induced PLM phosphorylation has been shown to mediate NKA stimulation, the role of endogenous phosphatases is presently unknown. We investigated the role of protein phosphatase-1 (PP-1) on PLM phosphorylation and NKA activity in rat cardiomyocytes and failing human hearts. Incubation of rat cardiomyocytes with the chemical PP-1/PP-2A inhibitor okadaic acid or the specific PP-1-inhibitor peptide (I-1ct) identified PLM phosphorylation at Ser-68 as the main substrate for PP-1. Moreover, myocytes adenovirally overexpressing PP-1 inhibitor-1 protein (I-1,Ad-I-1/eGFP) showed a 70% increase in PLM Ser-68 phosphorylation and 65% increase in NKA curre...
Regulation of the Na/K ATPase by protein kinases is model-specific. We have observed a profound acti...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
AbstractAs the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase...
Cardiac Na/K-ATPase (NKA) is regulated by its accessory protein phospholemman (PLM). Whereas kinase-...
Abstract—Intracellular [Na] is3 mmol/L higher in heart failure (HF; in our arrhythmogenic rabbit mod...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Abstract—Because phospholemman (PLM) regulates the Na/K pump (NKA) and is a major cardiac phosphory...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
Regulation of the Na/K ATPase by protein kinases is model-specific. We have observed a profound acti...
Regulation of the Na/K ATPase by protein kinases is model-specific. We have observed a profound acti...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
AbstractAs the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase...
Cardiac Na/K-ATPase (NKA) is regulated by its accessory protein phospholemman (PLM). Whereas kinase-...
Abstract—Intracellular [Na] is3 mmol/L higher in heart failure (HF; in our arrhythmogenic rabbit mod...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Abstract—Because phospholemman (PLM) regulates the Na/K pump (NKA) and is a major cardiac phosphory...
Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction,...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
Regulation of the Na/K ATPase by protein kinases is model-specific. We have observed a profound acti...
Regulation of the Na/K ATPase by protein kinases is model-specific. We have observed a profound acti...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
AbstractAs the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase...