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Isolation and characterization of substance P-containing dense core vesicles from rabbit optic nerve and termini.

Authors :
Berg EA
Johnson RJ
Leeman SE
Boyd N
Kimerer L
Fine RE
Source :
Journal of neuroscience research [J Neurosci Res] 2000 Dec 15; Vol. 62 (6), pp. 830-9.
Publication Year :
2000

Abstract

In neurons, neuropeptides and other synaptic components are transported down the axon to the synapse in vesicles using molecular motors of the kinesin family. In the synapse, these neuropeptides are found in dense core vesicles (DCVs), and, following calcium-mediated exocytosis, they interact with receptors on the target cell. We have developed a rapid, large-scale technique for purifying peptide-containing DCVs from specific nuclei in the central nervous system. By using differential velocity gradient and equilibrium gradient centrifugation, neuropeptide-containing DCVs can be separated by size and density from optic nerve (ON) and its termini, the lateral geniculate nuclei and the superior colliculi. Isolated DCVs contain neuropeptides (substance P and brain-derived neurotrophic factor), synaptic vesicle (SV) membrane proteins (SV2, synaptotagmins, synaptophysin, Rab3 and synaptobrevin), SV-associated proteins (alpha-synuclein), secretory markers for DCVs previously isolated (secretogranin II), and beta-amyloid precursor protein. By using electron microscopic techniques, DCV were also visualized and shown to be immunoreactive for neuropeptides, neurotrophins, and SV membrane proteins. Because of the interesting group of physiological and potentially pathophysiological proteins associated with these vesicles; this isolation procedure, applicable to other CNS nuclei, should represent an important research tool.<br /> (Copyright 2000 Wiley-Liss, Inc.)

Details

Language :
English
ISSN :
0360-4012
Volume :
62
Issue :
6
Database :
MEDLINE
Journal :
Journal of neuroscience research
Publication Type :
Academic Journal
Accession number :
11107168
Full Text :
https://doi.org/10.1002/1097-4547(20001215)62:6<830::AID-JNR10>3.0.CO;2-E