An electron microscopic, immunogold analysis of glutamate and glutamine in terminals of rat spinocerebellar fibers
- 8 May 1991
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 307 (2) , 296-310
- https://doi.org/10.1002/cne.903070210
Abstract
A semiquantitative, electron microscopic immunocytochemical procedure based on the use of colloidal gold particles as markers was employed to analyze the subcellular distribution of glutamate and glutamine, a major glutamate precursor, in a subpopulation of spinocerebellar mossy fiber terminals. These terminals were identified by anterograde transport of a horseradish peroxidase-wheat germ agglutinin conjugate, injected in the thoracic spinal cord. Gold particles signalling glutamate-like immunoreactivity were enriched over clusters of synaptic vesicles relative to organelle-free cytoplasmic matrix, and there was a strong positive correlation between gold particle and synaptic vesicle densities (correlation coefficient 0.94). Gold particles indicating glutamine-ike immunoreactivity showed a much weaker correlation with vesicle density (correlation coefficient 0.36) and were about equally concentrated over cytoplasmic matrix as over clusters of synaptic vesicles. Compared with the mossy fibers, the putative GABAergic Golgi cell terminals exhibited a lower level of glutamate-like immunoreactivity, which was very weakly correlated with the vesicle density (correlation coefficient 0.27). The level of glutamine-like immunoreactivity in the Golgi cell terminals was similar to that in mossy fibers, but much lower than that in glial cells. The anterogradely labelled mossy fiber terminals were not enriched in immunoreactivities for aspartate or GABA. These results suggest that the level and subcellular distribution of glutamate in presumed glutamatergic terminals differs from that in terminals in which glutamate only serves metabolic or precursor roles, and that these differences can be exploited in immunocytochemical studies aimed at identifying glutamate-using neurons. In contrast, glutamine immunocytochemistry does not seem to be generally useful in this regard.Keywords
This publication has 46 references indexed in Scilit:
- Glutamate as the Principal Mossy Fibre Transmitter in Rat Cerebellum: pharmacological evidenceEuropean Journal of Neuroscience, 1990
- The GABAergic neurones of the cerebellar nuclei in the rat: Projections to the cerebellar cortexNeuroscience Letters, 1989
- Spinocerebellar projections from the upper lumbar segments in the cat, as studied by anterograde transport of wheat germ agglutinin‐horseradish peroxidaseJournal of Comparative Neurology, 1989
- Monoclonal antibody directed against glutaraldehyde conjugated glutamate and immunocytochemical applications in the rat brainBrain Research, 1989
- Spinocerebellar projections from the lowest lumbar and sacral‐caudal segments in the cat, as studied by anterograde transport of wheat germ agglutinin‐horseradish peroxidaseJournal of Comparative Neurology, 1988
- Characterization of antisera to glutamate and aspartate.Journal of Histochemistry & Cytochemistry, 1988
- Spinocerebellar projections from the thoracic cord in the cat, as studied by anterograde transport of wheat germ agglutinin‐horseradish peroxidaseJournal of Comparative Neurology, 1987
- Enhanced ultrastructural visualization of the horseradish peroxidase-tetramethylbenzidine reaction product.Journal of Histochemistry & Cytochemistry, 1985
- Antisera to gamma-aminobutyric acid. III. Demonstration of GABA in Golgi-impregnated neurons and in conventional electron microscopic sections of cat striate cortex.Journal of Histochemistry & Cytochemistry, 1985
- Cerebellar Afferent SystemsPublished by American Geophysical Union (AGU) ,1981