Influence of membrane potential on the sodium-dependent uptake of gamma-aminobutyric acid by presynaptic nerve terminals: Experimental observations and theoretical considerations
- 1 December 1976
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 30 (1) , 153-173
- https://doi.org/10.1007/bf01869665
Abstract
Sodium, potassium and veratridine were tested for their effects on the uptake of gamma-aminobutyric acid (GABA) by pinched-off presynaptic nerve terminals (synaptosomes). As noted by previous investigators, the uptake from media containing 1 μm GABA (“high-affinity” uptake) is markedly Na-dependent; the uptake averaged 65 pmoles/mg synaptosome protein × min, with [Na]0=145mm and [K]0=5mm, and declined by about 90% when the external Na concentration ([Na]0) was reduced to 13mm (Na replaced by Li). The relationship between [Na]0 and GABA uptake was sigmoid, suggesting that two or more Na+ ions may be required to activate the uptake of one GABA molecule. Thermodynamic considerations indicate that with a Na+/GABA stoichiometry of 2∶1, the Na electrochemical gradient, alone, could provide sufficient energy to maintain a maximum steady-state GABA gradient ([GABA] i /[GABA]0) of about 104 across the plasma membrane of GABA-nergic terminals. In Ca-free media with constant [Na]0, GABA uptake was inhibited, without delay, by increasing [K]0 or by introducing 75 μm veratridine; the effect of veratridine was blocked by 200nm tetrodotoxin. The rapid onset (within 10 sec) of the veratridine and elevated-K effects implies that alterations in intra-terminal ion concentrations are not responsible for the inhibition. The uptake of GABA was inversely proportional to log [K]0. These observations are consistent with the idea that the inhibitory effects of both veratridine and elevated [K]0 may be a consequence of their depolarizing action. The data are discussed in terms of a barrier model (Hall, J. E., Mead, C.A., Szabo, G. 1973.J. Membrane Biol. 11:75) which relates carrier-mediated ionic flux to membrane potential.Keywords
This publication has 75 references indexed in Scilit:
- Reversed transport of amino acids in Ehrlich cellsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1975
- HIGH AFFINITY UPTAKE OF l‐GLUTAMINE IN RAT BRAIN SLICESJournal of Neurochemistry, 1975
- Na+-gradient-stimulated AIB transport in membrane vesicles from Ehrlich ascites cellsThe Journal of Membrane Biology, 1974
- EFFECTS OF MEMBRANE POTENTIAL ON SODIUM AND POTASSIUM FLUXES IN SQUID AXONSAnnals of the New York Academy of Sciences, 1974
- Neurochemical correlates of synaptically active amino acidsLife Sciences, 1974
- A barrier model for current flow in lipid bilayer membranesThe Journal of Membrane Biology, 1973
- Neurotransmitter uptake: A tool in identifying neurotransmitter-specific pathwaysLife Sciences, 1973
- RESPIRATION IN VITRO OF SYNAPTOSOMES FROM MAMMALIAN CEREBRAL CORTEXJournal of Neurochemistry, 1969
- STUDIES ON SODIUM TRANSPORT IN RAT BRAIN NERVE‐ENDING PARTICLESJournal of Neurochemistry, 1968
- Role of sodium, potassium, quabain and reserpine in uptake, storage and metabolism of biogenic amines in synaptosomesLife Sciences, 1968