Inhibition by excitatory sulphur amino acids of the high-affinityl-glutamate transporter in synaptosomes and in primary cultures of cortical astrocytes and cerebellar neurons
- 1 April 1989
- journal article
- conference paper
- Published by Springer Nature in Neurochemical Research
- Vol. 14 (4) , 333-343
- https://doi.org/10.1007/bf01000036
Abstract
A detailed kinetic study of the inhibitory effects ofl- andd-enantiomers of cysteate, cysteine sulphinate, homocysteine sulphinate, homocysteate, and S-sulpho-cysteine on the neuronal, astroglial and synaptosomal high-affinity glutamate transport system was undertaken.d-[3H] Aspartate was used as the transport substrate. Kinetic characterisation of uptake in the absence of sulphur compounds confirmed the high-affinity nature of the transport systems, the Michaelis constant (Km) ford-aspartate uptake being 6 μM, 21 μM and 84 μM, respectively, in rat brain cortical synaptosomes and primary cultures of mouse cerebellar granule cells and cortical astrocytes. In those cases where significant effects could be demonstrated, the nature of the inhibition was competitive irrespective of the neuronal versus glial systems. The rank order of inhibition was essentially similar in synaptosomes, neurons and astrocytes. Potent inhibition (Ki∼Km) of transport in each system was exhibited byl-cysteate, andl- andd-cysteine sulphinate whereas substantially weaker inhibitory effects (Ki>10–1000 times the appropriateKm value) were exhibited by the remaining sulphur amino acids. In general, inhibition: (i) was markedly stereospecific in favor of thel-enantiomers (except for cysteine sulphinate) and (ii) was found to decrease with increasing chain length. Computer-assisted molecular modelling studies, in which volume contour maps of the sulphur compounds were superimposed on those ofd-aspartate andl-glutamate, demonstrated an order of inhibitory potency which was, qualitatively, in agreement with that obtained quantitatively by in vitro kinetic studies.Keywords
This publication has 41 references indexed in Scilit:
- Differences between substrate specificities of l-glutamate uptake by neurons and glia, studied in cell lines and primary culturesNeurochemistry International, 1987
- Glutamate: A Neurotransmitter in Mammalian BrainJournal of Neurochemistry, 1984
- Selective inhibition of glial versus neuronal uptake ofl-glutamic acid by SITSBrain Research, 1983
- Characterization of uptake and release processes ford- andl-aspartate in primary cultures of astrocytes and cerebellar granule cellsNeurochemical Research, 1983
- Transport and Metabolism of Glutamate and Gaba in Neurons and Glial CellsPublished by Elsevier ,1981
- The uptake and release of putative amino acid neurotransmittersNeuroscience, 1979
- THE STRUCTURAL SPECIFICITY OF THE HIGH AFFINITY UPTAKE OF l‐GLUTAMATE AND l‐ASPARTATE BY RAT BRAIN SLICESJournal of Neurochemistry, 1972
- High affinity uptake systems for glycine, glutamic and aspartic acids in synaptosomes of rat central nervous tissuesBrain Research, 1972
- Glutamate uptake by brain slices and its relation to the depolarization of neurones by acidic amino acidsJournal of Neurobiology, 1972
- THE EXCITATION AND DEPRESSION OF SPINAL NEURONES BY STRUCTURALLY RELATED AMINO ACIDSJournal of Neurochemistry, 1960