QUANTAL ACETYLCHOLINE-RELEASE AT THE VERTEBRATE NEUROMUSCULAR-JUNCTION

被引:213
作者
VANDERKLOOT, W
MOLGO, J
机构
[1] SUNY STONY BROOK, HLTH SCI CTR, DEPT PHARMACOL SCI, STONY BROOK, NY 11794 USA
[2] CNRS, NEUROBIOL CELLULAIRE & MOLEC LAB, GIF SUR YVETTE, FRANCE
关键词
D O I
10.1152/physrev.1994.74.4.899
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The ACh that is released to transmit the signal from nerve to muscle is packaged in vesicles and consequently is released as quanta. Quantal release enables the synapse to work fast. The released ACh diffuses through a meshwork of AChE, which is one of the fastest enzymes known. The enzyme in the diffusion path is saturated by the high local concentration of ACh, so plenty of the ACh reaches the end plate. The high concentration at the end plate opens many ACh receptor channels almost synchronously. The receptors release the bound ACh and close rapidly, but because the release is asynchronous, almost all that comes off is promptly destroyed by the enzyme. We do not find the evidence that quanta are made up of subunits persuasive. The difference between the rate of spontaneous quantal release and the maximum evoked release is about the same as the difference between the rate of a spontaneous chemical transformation and the rate when it is enzymatically catalyzed. Viewed in this light, spontaneous release does not seem so exceptional, nor does it necessarily serve a signaling function. What is notable compared with most chemical reactions is that we can so readily detect the individual events. Our overall conclusion is that there still is much to do. From the standpoint of the pioneers at the NMJ, we have made almost unimaginable progress, now sorting out the molecules that make up the exocytotic apparatus. Many fundamental questions remain unanswered however. We do not understand seemingly simple plastic changes, such as facilitation or depression. We have only the vaguest concepts of how the vesicles are formed, transported to the active zones, and released. We know that Ca2+ plays a central role in regulating release, but the site(s) at which it acts remains unknown. We could extend this list, but the point is that the NMJ is an accessible synapse, unmatched for measuring quantal release, that still has much to teach us.
引用
收藏
页码:899 / 991
页数:93
相关论文
共 1197 条
[41]   RAPID INTRODUCTION OF LONG-LASTING SYNAPTIC CHANGES AT CRUSTACEAN NEUROMUSCULAR-JUNCTIONS [J].
ATWOOD, HL ;
DIXON, D ;
WOJTOWICZ, JM .
JOURNAL OF NEUROBIOLOGY, 1989, 20 (05) :373-385
[42]   NEUROTRANSMITTER RELEASE AND NERVE-TERMINAL MORPHOLOGY AT THE FROG NEUROMUSCULAR-JUNCTION AFFECTED BY THE DYE ERYTHROSIN-B [J].
AUGUSTINE, GJ ;
LEVITAN, H .
JOURNAL OF PHYSIOLOGY-LONDON, 1983, 334 (JAN) :47-+
[43]   CALCIUM REQUIREMENTS FOR SECRETION IN BOVINE CHROMAFFIN CELLS [J].
AUGUSTINE, GJ ;
NEHER, E .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 450 :247-271
[44]   PRESYNAPTIC CALCIUM SIGNALS DURING NEUROTRANSMITTER RELEASE - DETECTION WITH FLUORESCENT INDICATORS AND OTHER CALCIUM CHELATORS [J].
AUGUSTINE, GJ ;
ADLER, EM ;
CHARLTON, MP ;
HANS, M ;
SWANDULLA, D ;
ZIPSER, K .
JOURNAL OF PHYSIOLOGY-PARIS, 1992, 86 (1-3) :129-134
[45]   CALCIUM ENTRY AND TRANSMITTER RELEASE AT VOLTAGE-CLAMPED NERVE-TERMINALS OF SQUID [J].
AUGUSTINE, GJ ;
CHARLTON, MP ;
SMITH, SJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1985, 367 (OCT) :163-181
[46]   CALCIUM ACTION IN SYNAPTIC TRANSMITTER RELEASE [J].
AUGUSTINE, GJ ;
CHARLTON, MP ;
SMITH, SJ .
ANNUAL REVIEW OF NEUROSCIENCE, 1987, 10 :633-693
[47]   EVALUATION OF THE TIME COURSE OF NEUROTRANSMITTER RELEASE FROM THE MEASURED PSC AND MPSC [J].
AUMANN, Y ;
PARNAS, H .
BULLETIN OF MATHEMATICAL BIOLOGY, 1991, 53 (04) :537-555
[48]   QUANTAL TRANSMITTER RELEASE MEDIATED BY STRONTIUM AT THE MOUSE MOTOR-NERVE TERMINAL [J].
BAIN, AI ;
QUASTEL, DMJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 450 :63-87
[49]   MULTIPLICATIVE AND ADDITIVE CA2+-DEPENDENT COMPONENTS OF FACILITATION AT MOUSE END-PLATES [J].
BAIN, AI ;
QUASTEL, DMJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 455 :383-405
[50]   CALCIUM CONTROL OF EXOCYTOSIS AND ENDOCYTOSIS IN BOVINE ADRENAL-MEDULLARY CELLS [J].
BAKER, PF ;
KNIGHT, DE .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 1981, 296 (1080) :83-+