Literature DB >> 10358110

Depolarization increases the apparent affinity of the Na+-K+ pump to cytoplasmic Na+ in isolated guinea-pig ventricular myocytes.

G Barmashenko1, J Kockskämper, H G Glitsch.   

Abstract

1. In order to investigate the possible effect of membrane potential on cytoplasmic Na+ binding to the Na+-K+ pump, we studied Na+-K+ pump current-voltage relationships in single guinea-pig ventricular myocytes whole-cell voltage clamped with pipette solutions containing various concentrations of Na+ ([Na+]pip) and either tetraethylammonium (TEA+) or N-methyl-D-glucamine (NMDG+) as the main cation. The experiments were conducted at 30 C under conditions designed to abolish the known voltage dependence of other steps in the pump cycle, i.e. in Na+-free external media containing 20 mM Cs+. 2. Na+-K+ pump current (Ip) was absent in cells dialysed with Na+-free pipette solutions and was almost voltage independent at 50 mM Na+pip (potential range: -100 to +40 mV). By contrast, the activation of Ip by 0.5-5 mM Na+pip was clearly voltage sensitive and increased with depolarization, independently of the main intracellular cation species. 3. The apparent affinity of the Na+-K+ pump for cytoplasmic Na+ increased monotonically with depolarization. The [Na+]pip required for half-maximal Ip activation (K0.5 value) amounted to 5.6 mM at -100 mV and to 2.2 mM at +40 mV. 4. The results suggest that cytoplasmic Na+ binding and/or a subsequent partial reaction in the pump cycle prior to Na+ release is voltage dependent. From the voltage dependence of the K0.5 values the dielectric coefficient for intracellular Na+ binding/translocation was calculated to be approximately 0.08. The voltage-dependent mechanism might add to the activation of the cardiac Na+-K+ pump during cardiac excitation.

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Year:  1999        PMID: 10358110      PMCID: PMC2269372          DOI: 10.1111/j.1469-7793.1999.0691s.x

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  33 in total

1.  Charge translocation by the Na+/K+-ATPase investigated on solid supported membranes: cytoplasmic cation binding and release.

Authors:  J Pintschovius; K Fendler; E Bamberg
Journal:  Biophys J       Date:  1999-02       Impact factor: 4.033

2.  Voltage-dependent inhibition of the Na(+)-K+ pump by intracellular potassium in rabbit ventricular myocytes.

Authors:  P S Hansen; D F Gray; K A Buhagiar; H H Rasmussen
Journal:  Ann N Y Acad Sci       Date:  1997-11-03       Impact factor: 5.691

3.  Sodium pump of cultured guinea pig atrial myocytes.

Authors:  J Kockskämper; H G Glitsch
Journal:  Ann N Y Acad Sci       Date:  1997-11-03       Impact factor: 5.691

4.  Voltage dependence of Na/K pump current in isolated heart cells.

Authors:  D C Gadsby; J Kimura; A Noma
Journal:  Nature       Date:  1985 May 2-8       Impact factor: 49.962

5.  Fast charge translocations associated with partial reactions of the Na,K-pump: II. Microscopic analysis of transient currents.

Authors:  H J Apell; R Borlinghaus; P Läuger
Journal:  J Membr Biol       Date:  1987       Impact factor: 1.843

6.  Fast charge translocations associated with partial reactions of the Na,K-pump: I. Current and voltage transients after photochemical release of ATP.

Authors:  R Borlinghaus; H J Apell; P Läuger
Journal:  J Membr Biol       Date:  1987       Impact factor: 1.843

7.  The effect of membrane potential on the mammalian sodium-potassium pump reconstituted into phospholipid vesicles.

Authors:  R Goldshlegger; S J Karlish; A Rephaeli; W D Stein
Journal:  J Physiol       Date:  1987-06       Impact factor: 5.182

8.  Potassium translocation by the Na+/K+ pump is voltage insensitive.

Authors:  A Bahinski; M Nakao; D C Gadsby
Journal:  Proc Natl Acad Sci U S A       Date:  1988-05       Impact factor: 11.205

9.  Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches.

Authors:  O P Hamill; A Marty; E Neher; B Sakmann; F J Sigworth
Journal:  Pflugers Arch       Date:  1981-08       Impact factor: 3.657

10.  Voltage dependence of the rheogenic Na+/K+ ATPase in the membrane of oocytes of Xenopus laevis.

Authors:  A V Lafaire; W Schwarz
Journal:  J Membr Biol       Date:  1986       Impact factor: 1.843

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  1 in total

1.  Intracellular [Na+] and Na+ pump rate in rat and rabbit ventricular myocytes.

Authors:  Sanda Despa; Mohammed A Islam; Steven M Pogwizd; Donald M Bers
Journal:  J Physiol       Date:  2002-02-15       Impact factor: 5.182

  1 in total

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