Aims Elevation of intracellular Na in the failing myocardium contributes to contractile dysfunction, the negative force–fre-quency relationship, and arrhythmias. Although phospholemman (PLM) is recognized to form the link between signalling pathways and Na/K pump activity, the possibility that defects in its regulation contribute to elevation of intracellular Na has not been investigated. Our aim was to test the hypothesis that the prevention of PLM phosphorylation in a PLM3SA knock-in mouse (in which PLM has been rendered unphosphorylatable) will exacerbate cardiac hypertrophy and cellular Na overload. Testing this hypothesis should determine whether changes in PLM phosphorylation are simply bystander effects or are causally involved in di...
Abstract—Because phospholemman (PLM) regulates the Na/K pump (NKA) and is a major cardiac phosphory...
Cardiac Na/K-ATPase (NKA) is regulated by its accessory protein phospholemman (PLM). Whereas kinase-...
In order to determine if mutations made to phospholemman (PLM) could increase PLM binding to the Na/...
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,...
Aims: Elevation of intracellular Na in the failing myocardium contributes to contractile dysfuncti...
Aims: Elevation of intracellular Na in the failing myocardium contributes to contractile dysfuncti...
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...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
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...
Abstract—Because phospholemman (PLM) regulates the Na/K pump (NKA) and is a major cardiac phosphory...
Cardiac Na/K-ATPase (NKA) is regulated by its accessory protein phospholemman (PLM). Whereas kinase-...
In order to determine if mutations made to phospholemman (PLM) could increase PLM binding to the Na/...
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,...
Aims: Elevation of intracellular Na in the failing myocardium contributes to contractile dysfuncti...
Aims: Elevation of intracellular Na in the failing myocardium contributes to contractile dysfuncti...
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...
Phospholemman (PLM, FXYD1), abundantly expressed in the heart, is the primary cardiac sarcolemmal su...
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...
Abstract—Because phospholemman (PLM) regulates the Na/K pump (NKA) and is a major cardiac phosphory...
Cardiac Na/K-ATPase (NKA) is regulated by its accessory protein phospholemman (PLM). Whereas kinase-...
In order to determine if mutations made to phospholemman (PLM) could increase PLM binding to the Na/...