Ion selectivity of the cytoplasmic binding sites of the Na,K-ATPase: I. Sodium binding is associated with a conformational rearrangement.
A Schneeberger, H J Apell
Index: J. Membr. Biol. 168(3) , 221-8, (1999)
Full Text: HTML
Abstract
To investigate Na+ binding to the ion-binding sites presented on the cytoplasmic side of the Na,K-ATPase, equilibrium Na+-titration experiments were performed using two fluorescent dyes, RH421 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 the ATP-binding moiety. This enables enzyme phosphorylation, which is accompanied by a fast occlusion of the Na+ ions and followed by the conformational transition E1/E2 of the protein. The coordinated action both at the ion and the nucleotide binding sites allows for the first time a detailed formulation of the mechanism of enzyme phosphorylation that occurs only when three Na+ ions are bound.
Related Compounds
Related Articles:
2015-01-01
[Biochim. Biophys. Acta 1848(1 Pt A) , 192-9, (2015)]
[The effects of RH 421 on the activity of amphotericin B in cell and model membranes].
2013-01-01
[Tsitologiia 55(2) , 136-9, (2013)]
Probing amphotericin B single channel activity by membrane dipole modifiers.
2012-01-01
[PLoS ONE 7(1) , e30261, (2012)]
Effect of gramicidin A on the dipole potential of phospholipid membranes.
1999-07-01
[Biophys. J. 77(1) , 299-305, (1999)]
Electrogenic plasma membrane H+-ATPase activity using voltage sensitive dyes.
2010-10-01
[J. Bioenerg. Biomembr. 42(5) , 387-93, (2010)]