To investigate Na+ binding to the ion-binding sites presented on the cytoplasmic side of the Na,KATPase, equilibrium Na+-titration experiments were performed using two fluorescent dyes, RH421¹ and FITC, to detect protein-specific actions. Fluorescence changes upon addition of Na+ in the presence of various Mg2+ concentrations were similar and could be fitted with a Hill function. The half-saturating concentrations and Hill coefficients determined were almost identical. As RH421 responds to binding of a Na+ ion to the third neutral site whereas FITC monitors conformational changes in the ATP-binding site or its environment, this result implies that electrogenic binding of the third Na+ ion is the trigger for a structural rearrangement of th...
In contrast to other P-type ATPases, the Na,K-ATPase binding and release of ions on the cytoplasmic ...
AbstractThe Na+K+-ATPase functions in cells to couple energy from the hydrolysis of ATP to the trans...
The charge transporting activity of the Na+,K+-ATPase depends on its surrounding electric field. To ...
To investigate Na+ binding to the ion-binding sites presented on the cytoplasmic side of the Na,KATP...
In the E1 state of the Na,K-ATPase all cations present in the cytoplasm compete for the ion binding ...
Electrogenic binding of ions from the cytoplasmic side of the Na+,K+-ATPase has been studied by meas...
AbstractThe Mg2+ dependence of the kinetics of the phosphorylation and conformational changes of Na+...
Ion binding at the extracellular face of the Na,K-ATPase is electrogenic and can be monitored by the...
Ion binding at the extracellular face of the Na,K-ATPase is electrogenic and can be monitored by the...
Voltage clamp fluorometry was used to monitor conformational changes associated with electrogenic pa...
AbstractThe focus of this article is on progress in establishing structure–function relationships th...
In the Na,K-ATPase the charge-translocating reaction steps were found to be binding of the third Na+...
The method of voltage clamp fluorometry combined with site-directed fluorescence labeling was used t...
AbstractA conformational transition between E2 and E1 forms of Na, K-ATPase induced by different nuc...
Abstract. Ion binding at the extracellular f'ace of the Na,K-ATPase is electrogenic and can be ...
In contrast to other P-type ATPases, the Na,K-ATPase binding and release of ions on the cytoplasmic ...
AbstractThe Na+K+-ATPase functions in cells to couple energy from the hydrolysis of ATP to the trans...
The charge transporting activity of the Na+,K+-ATPase depends on its surrounding electric field. To ...
To investigate Na+ binding to the ion-binding sites presented on the cytoplasmic side of the Na,KATP...
In the E1 state of the Na,K-ATPase all cations present in the cytoplasm compete for the ion binding ...
Electrogenic binding of ions from the cytoplasmic side of the Na+,K+-ATPase has been studied by meas...
AbstractThe Mg2+ dependence of the kinetics of the phosphorylation and conformational changes of Na+...
Ion binding at the extracellular face of the Na,K-ATPase is electrogenic and can be monitored by the...
Ion binding at the extracellular face of the Na,K-ATPase is electrogenic and can be monitored by the...
Voltage clamp fluorometry was used to monitor conformational changes associated with electrogenic pa...
AbstractThe focus of this article is on progress in establishing structure–function relationships th...
In the Na,K-ATPase the charge-translocating reaction steps were found to be binding of the third Na+...
The method of voltage clamp fluorometry combined with site-directed fluorescence labeling was used t...
AbstractA conformational transition between E2 and E1 forms of Na, K-ATPase induced by different nuc...
Abstract. Ion binding at the extracellular f'ace of the Na,K-ATPase is electrogenic and can be ...
In contrast to other P-type ATPases, the Na,K-ATPase binding and release of ions on the cytoplasmic ...
AbstractThe Na+K+-ATPase functions in cells to couple energy from the hydrolysis of ATP to the trans...
The charge transporting activity of the Na+,K+-ATPase depends on its surrounding electric field. To ...