2 COMPONENTS OF TRANSMITTER RELEASE IN RETINAL BIPOLAR CELLS - EXOCYTOSIS AND MOBILIZATION OF SYNAPTIC VESICLES

Citation
T. Sakaba et al., 2 COMPONENTS OF TRANSMITTER RELEASE IN RETINAL BIPOLAR CELLS - EXOCYTOSIS AND MOBILIZATION OF SYNAPTIC VESICLES, Neuroscience research, 27(4), 1997, pp. 357-370
Citations number
44
Categorie Soggetti
Neurosciences
Journal title
ISSN journal
01680102
Volume
27
Issue
4
Year of publication
1997
Pages
357 - 370
Database
ISI
SICI code
0168-0102(1997)27:4<357:2COTRI>2.0.ZU;2-W
Abstract
Ca2+-transmitter release coupling was examined using bipolar cells wit h large presynaptic terminals dissociated from the goldfish retina. Pr esynaptic Ca2+ current (I-Ca) was recorded under the whole-cell voltag e clamp. Release of excitatory amino acid transmitter was simultaneous ly monitored as the current through N-methyl-D-asperate (NMDA) recepto rs of reporter cells or as the membrane capacitance (C-m) change assoc iated with exocytosis. When I-Ca was activated by a long depolarizing pulse, a double-peaked transmitter-induced current (I-tr) was elicited in reporter cells. The rapid component of I-tr was evoked immediately after the onset of depolarization, and was affected only slightly by intracellularly applied Ca2+ chelators. The delayed slow component of I-tr was elicited during depolarization once a fixed amount of Ca2+ wa s accumulated in presynaptic terminals, and its appearance was suppres sed or retarded by Ca-2+ chelators. Two components of transmitter rele ase were also recognized by monitoring C-m changes elicited by the act ivation of I-Ca. These results suggest that bipolar cells have at leas t two pools of synaptic vesicles; a small, immediately releasable pool and a large releasable pool. The rapid and the delayed slow component s of transmitter release may reflect exocytosis and mobilization of sy naptic vesicles: respectively. (C) 1997 Elsevier Science Ireland Ltd.