Literature DB >> 132350

(Na+, K+)-activated adenosinetriphosphatase of axonal membranes, cooperativity and control. Steady-state analysis.

C Gache, B Rossi, M Lazdunski.   

Abstract

1. The ATP sites. Homotropic interactions between ATP sites have been studied in a very large range of Na+ and K+ concentrations. The ( Na+, K+)-activated ATPase displays Michaelis-Menten kinetics for ATP under standard concentration conditions of Na+ (100 mM) and K+ (10 mM). The steady-state kinetics behavior changes at very low concentrations of K+ where negative cooperativity is observed. The existence of a high affinity and a low affinity site for ATP was clearly demonstrated from the study of the ATP stimulated hydrolysis of p-nitrophenylphosphate in the presence of Na+ and K+. The ratio of apparent affinities of high and low affinity sites for ATP is 86 at pH 7.5. 2. The Na+ sites. The binding of Na+ to its specific stimulatory sites (internal sites) is characterized by positive cooperativity with a Hill coefficient n(H(Na+))=2.0. Homotropic interactions between Na+ sites are unaffected by variations of the K+ concentration. 3. The K+ sites. (a) Binding of K+ to the (external) stimulatory site of the ATPase has been analyzed by following the (Na+, K+)-ATPase activity as well as the p-nitrophenylphosphatase activity in the presence of Na+ and K+ (with or without ATP). Binding is characterized by a Hill coefficient of 1.0 and a K(0.5(K+))=0.1 to 0.8 mM. The absence of positive or negative cooperativity persists between 5 mM and 100 mM Na+. (b) The analysis of the p-nitrophenylphosphatase or of the 2, 4 dinitrophenylphosphatase activity in the presence of K+ alone indicates the existence of low affinity sites for K+ with positive homotropic interactions. The characteristics of stimulation in that case are, K(0.5)=5 mM, n(H)=1.9. The properties of this family of site(s) are the following: firstly, saturation of the low affinity site(s) by K+ prevents ATP binding to its high affinity internal site. Secondly, saturation of the low affinity sites for K+ prevents binding of Na+ to its internal sites. Thirdly, this family of sites disappears in the presence of ATP, p-nitrophenylphosphate or of both substrates, when Na+ binds to its internal sites. Na+ binding to its specific stimulatory sites provokes the formation of the high affinity type of site for K+. 4. Mg2+ stimulation of the (Na+, K+)-ATPase is characterized by a Hill coefficient n(H(Mg2+))=1.0 and a K(0.5(Mg2+))=1 mM stimulation is essentially a V effect. Heterotropic effects between binding of Mg2+ and substrate to their respective sites are small. Heterotropic interactions between the Ms2+, Na+ and K+ sites are also small. 5. The fluidity of membrane lipids also controls the (Na+, K+)-ATPase activity. Phase transitions or separations in the membrane hardly affect recognition properties of substrates, Na+, K+ and Mg2+ for their respective sites on both sides of the membrane. Only the rate of the catalytic transformation is affected.

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Year:  1976        PMID: 132350     DOI: 10.1111/j.1432-1033.1976.tb10417.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  16 in total

1.  Cell membrane receptors for cardiac glycosides in the heart.

Authors:  E Erdmann
Journal:  Basic Res Cardiol       Date:  1977 Jul-Aug       Impact factor: 17.165

2.  Conformational changes of membrane-bound (Na+--K+)-ATPase as revealed by trypsin digestion.

Authors:  H Koepsell
Journal:  J Membr Biol       Date:  1979-06-29       Impact factor: 1.843

3.  Substructure of membrane-bound Na+-K+-ATPase protein.

Authors:  W Haase; H Koepsell
Journal:  Pflugers Arch       Date:  1979-08       Impact factor: 3.657

4.  Phosphatases in the central nervous system of spiders (Arachnida, Araneae).

Authors:  W Meyer
Journal:  Histochemistry       Date:  1979-01-22

5.  Characteristics of antibody inhibition of rat kidney (Na+ -K+)-ATPase.

Authors:  H Koepsell
Journal:  J Membr Biol       Date:  1978-12-08       Impact factor: 1.843

6.  New kinetic parameters for rat liver arginase measured at near-physiological steady-state concentrations of arginine and Mn2+.

Authors:  S Maggini; F B Stoecklin-Tschan; S Mörikofer-Zwez; P Walter
Journal:  Biochem J       Date:  1992-05-01       Impact factor: 3.857

7.  Kinetics of K(+)-p-nitrophenyl phosphatase stimulation by a brain soluble fraction.

Authors:  G Rodríguez de Lores Arnaiz
Journal:  Neurochem Res       Date:  1997-02       Impact factor: 3.996

8.  Calcium channel antagonists inhibit the acrosome reaction and bind to plasma membranes of sea urchin sperm.

Authors:  T Kazazoglou; R W Schackmann; M Fosset; B M Shapiro
Journal:  Proc Natl Acad Sci U S A       Date:  1985-03       Impact factor: 11.205

9.  A Kinetic Characterization of the Gill (Na+, K+)-ATPase from the Semi-terrestrial Mangrove Crab Cardisoma guanhumi Latreille, 1825 (Decapoda, Brachyura).

Authors:  Daniel L Farias; Malson N Lucena; Daniela P Garçon; Fernando L Mantelatto; John C McNamara; Francisco A Leone
Journal:  J Membr Biol       Date:  2017-08-24       Impact factor: 1.843

10.  Characterization of K(+)-dependent and K(+)-independent p-nitrophenylphosphatase activity of synaptosomes.

Authors:  M Guerra Marichal; A Rodríguez del Castillo; P Martín Vasallo; E Battaner Arias
Journal:  Neurochem Res       Date:  1993-07       Impact factor: 3.996

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