Literature DB >> 3005263

Li+ as substrate of the synaptosomal Na+/H+ antiporter.

G Schmalzing, T Schlosser, P Kutschera.   

Abstract

The influence of replacing external Na+ by choline+ on Li+ uptake into rat cortical synaptosomes was studied. Tetraphenylphosphonium+ and methylamine distribution techniques were used to estimate the plasma membrane potential and the transmembrane H+ gradients, respectively. H+ efflux was monitored by automatic titration in the pH-stat mode. In the Na+- and K+-free medium, synaptosomes concentrated Li+ about 10-fold at 1 mM Li+o in the presence of ouabain. Varying external free Ca2+ between 13 and 300 microM, or addition of MgCl2 had no effect on Li+ uptake. Ouabain-insensitive Li+ transport was separated into two components: 1) non-saturable Li+ influx with a rate constant of 0.6/min; 2) saturable uptake, which obeyed Michaelis-Menten kinetics (Km, 2.0 mM Li+; Vmax, 7.3 mmol of Li+/liter and min). Li+ uptake was competitively inhibited by amiloride (Ki, 3.2 microM; Hill coefficient, 1.0) and external Na+ (Ki, 5.8 mM). External Li+ scarcely accelerated Na+ efflux and phloretin failed to inhibit Li+ uptake, indicating that Li+ uptake was not directly coupled to Na+ gradient. Because of a reversal of the H+ transport by the pHi-regulating system, synaptosomes accumulated acid in the Na+-free medium. Li+ influx was electroneutral, but impaired H+ gradients and was coupled to the simultaneous release of stoichiometric amounts of H+ at less than 3 mM Li+o. Uptake of Li+ was linearly related to H+ gradients imposed onto the plasma membrane by varying external pH. In the steady state, internal Li+ was close to the value predicted for passive distribution. It is concluded that in Na+-free media Li+ uptake at low external Li+ is predominantly driven by transmembrane H+ gradients. The stoichiometric exchange of Li+ for H+ is mediated by the Na+/H+ antiporter. The Li+ distribution ratio is close to the electrochemical activity coefficient since protons are passively distributed across the synaptosomal plasma membrane in the absence of external Na+.

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Year:  1986        PMID: 3005263

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  2 in total

1.  Steady-state function of the ubiquitous mammalian Na/H exchanger (NHE1) in relation to dimer coupling models with 2Na/2H stoichiometry.

Authors:  Daniel Fuster; Orson W Moe; Donald W Hilgemann
Journal:  J Gen Physiol       Date:  2008-10       Impact factor: 4.086

2.  Interactions of bilirubin with isolated presynaptic nerve terminals: functional effects on the uptake and release of neurotransmitters.

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Journal:  Cell Mol Neurobiol       Date:  1993-02       Impact factor: 5.046

  2 in total

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