AbstractAs the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pump) is the primary regulator of intracellular Na. The transmembrane Na gradient it establishes is essential for normal electrical excitability, numerous coupled-transport processes and, as the driving force for Na/Ca exchange, thus setting cardiac Ca load and contractility. As Na influx varies with electrical excitation, heart rate and pathology, the dynamic regulation of Na efflux is essential. It is now widely recognized that phospholemman, a 72 amino acid accessory protein which forms part of the Na pump complex, is the key nexus linking cellular signaling to pump regulation. Phospholemman is the target of a variety of post-translat...
Hansraj Dhayan, Rajender Kumar, Andreas Kukol, ‘Regulation of the Cardiac Na+/K+ ATPase by Phosphole...
The Na+/K+-ATPase (Na+ pump) is the principal consumer of ATP in multicellular organisms. In the hea...
The Na+/K+-ATPase (Na+ pump) is the principal consumer of ATP in multicellular organisms. In the hea...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
AbstractAs the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
Hansraj Dhayan, Rajender Kumar, Andreas Kukol, ‘Regulation of the Cardiac Na+/K+ ATPase by Phosphole...
The Na+/K+-ATPase (Na+ pump) is the principal consumer of ATP in multicellular organisms. In the hea...
The Na+/K+-ATPase (Na+ pump) is the principal consumer of ATP in multicellular organisms. In the hea...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
As the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase (Na pum...
AbstractAs the only quantitatively significant Na efflux pathway from cardiac cells, the Na/K ATPase...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
In cardiac muscle, the sarcolemmal sodium/potassium ATPase is the principal quantitative means of ac...
Hansraj Dhayan, Rajender Kumar, Andreas Kukol, ‘Regulation of the Cardiac Na+/K+ ATPase by Phosphole...
The Na+/K+-ATPase (Na+ pump) is the principal consumer of ATP in multicellular organisms. In the hea...
The Na+/K+-ATPase (Na+ pump) is the principal consumer of ATP in multicellular organisms. In the hea...