Hippocampal glutamate receptors
- 1 January 1981
- journal article
- research article
- Published by Springer Nature in Molecular and Cellular Biochemistry
- Vol. 38 (1) , 5-18
- https://doi.org/10.1007/bf00235685
Abstract
For years, the hippocampus has been the privileged domain of anatomists and electrophysiologists for investigating various neurobiological processes. The present review deals with recent work which shows that this structure is also well suited to study the role of glutamate as a neurotransmitter and more particularly the characteristics of glutamate receptors and their possible involvement in hippocampal function. After a brief description of the main anatomical features of the hippocampus, we attempt a critical evaluation of the electrophysiological studies of hippocampal glutamate receptors. We then describe the properties of Na-independent 3H-glutamate binding sites in hippocampal membranes, and discuss the possibility that these binding sites are related to postsynaptic glutamate receptors. Finally we show that these binding sites are extremely labile and that hippocampal membranes possess various mechanisms which regulate their number. In particular we develop the idea that the calcium-stimulation of 3H-glutamate binding in hippocampal membranes may be the mechanism by which electrical activity regulates the number of glutamate receptors at hippocampal synapses and thus induces long-lasting changes in synaptic transmission.Keywords
This publication has 67 references indexed in Scilit:
- Development of glutamate binding sites and their regulation by calcium in rat hippocampusDevelopmental Brain Research, 1981
- Increase in glutamate receptors following repetitive electrical stimulation in hippocampal slicesLife Sciences, 1980
- High affinity glutamate binding during postnatal development of rat cerebellumFEBS Letters, 1980
- A MODEL OF HIGH AFFINITY GLUTAMIC ACID TRANSPORT BY RAT CORTICAL SYNAPTOSOMES–A REFINEMENT OF THE ORIGINALLY PROPOSED MODELJournal of Neurochemistry, 1979
- The excitant amino acids glutamic and aspartic acid as transmitter candidates in the vertebrate central nervous systemProgress in Neurobiology, 1978
- Glutamate and quisqualate noise in voltage-clamped locust muscle fibresNature, 1976
- Partial purification and characterization of a glutamate-binding membrane glycoprotein from rat brainBiochemical and Biophysical Research Communications, 1975
- Neurofilament disguise, destruction and disciplineNature, 1975
- Glutamate receptors in the rat central nervous systemNature, 1974
- In Vitro excitation of purified membrane fragments by cholinergic agonistsThe Journal of Membrane Biology, 1971