Synapsin I (protein I), a nerve terminal-specific phosphoprotein. III. Its association with synaptic vesicles studied in a highly purified synaptic vesicle preparation.
Синапсин I (белок I), фосфопротеин, специфичный для нервных терминалей. III. Его ассоциация с синаптическими везикулами, изученная в высокоочищенной препарации синаптических везикул.
1983-05-01
SCID: 54.1/mx456evb
Discuss with AI
Synapsin I (protein I)calcium-dependent protein kinase (Ca/calmodulin-dependent)ionic strength–dependent dissociationpermeation chromatography on controlled-pore glasssynaptic vesicles
Figures from the paper
Abstract (AI)
Synapsin I (protein I) is a neuron-specific phosphoprotein, which is a substrate for cAMP-dependent and Ca/calmodulin-dependent protein kinases. In two accompanying studies (De Camilli, P., R. Cameron, and P. Greengard, and De Camilli, P., S. M. Harris, Jr., W. B. Huttner, and P. Greengard, 1983, J. Cell Biol. 96:1337-1354 and 1355-1373) we have shown, by immunocytochemical techniques at the light microscopic and electron microscopic levels, that synapsin I is present in the majority of, and possibly in all, nerve terminals, where it is primarily associated with synaptic vesicles. In the present study we have prepared a highly purified synaptic vesicle fraction from rat brain by a procedure that involves permeation chromatography on controlled-pore glass as a final purification step. Using immunological methods, synapsin I concentrations were determined in various subcellular fractions obtained in the course of vesicle purification. Synapsin I was found to copurify with synaptic vesicles and to represent approximately 6% of the total protein in the highly purified synaptic vesicle fraction. The copurification of synapsin I with synaptic vesicles was dependent on the use of low ionic strength media throughout the purification. Synapsin I was released into the soluble phase by increased ionic strength at neutral pH, but not by nonionic detergents. The highly purified synaptic vesicle fraction contained a calcium-dependent protein kinase that phosphorylated endogenous synapsin I in its collagenase-sensitive tail region. The phosphorylation of this region appeared to facilitate the dissociation of synapsin I from synaptic vesicles under the experimental conditions used.
Key Findings
1
A highly purified synaptic vesicle fraction was prepared from rat brain using controlled-pore glass permeation chromatography.
2
Copurification of synapsin I with synaptic vesicles required low ionic strength throughout purification; increased ionic strength released synapsin I into the soluble phase at neutral pH.
3
Nonionic detergents did not release synapsin I from synaptic vesicles under the conditions tested.
4
Phosphorylation of synapsin I's tail region by the calcium-dependent kinase appeared to facilitate dissociation of synapsin I from synaptic vesicles under experimental conditions.
5
Synapsin I copurified with synaptic vesicles and comprised approximately 6% of total protein in the highly purified vesicle fraction.
6
Synapsin I is neuron-specific and primarily associated with synaptic vesicles in nerve terminals.
7
The purified synaptic vesicle fraction contained a calcium-dependent protein kinase that phosphorylated synapsin I in its collagenase-sensitive tail region.
Research Object
Highly purified synaptic vesicle fraction from rat brain
Research Subject
Association and copurification of Synapsin I with synaptic vesicles, including its proportion of vesicle protein, ionic-strength-dependent release, phosphorylation by a Ca-dependent kinase, and phosphorylation-facilitated dissociation
Publication Details
Publication Date
1983-05-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest