Release of the styryl dyes from single synaptic vesicles in hippocampal neurons

被引:35
作者
Chen, Xi [1 ]
Barg, Sebastian [2 ]
Almers, Wolfhard [1 ]
机构
[1] Oregon Hlth & Sci Univ, Vollum Inst, Portland, OR 97239 USA
[2] Univ London Imperial Coll Sci & Technol, Dept Cell Biol, Div Med, London SW7 2AZ, England
关键词
presynaptic terminal; quantal release; fluorescence microscopy; vesicle transport; kiss-and-run; hippocampus; FROG NEUROMUSCULAR-JUNCTION; MOTOR-NERVE TERMINALS; RETINAL BIPOLAR CELLS; PRESYNAPTIC BOUTONS; TRANSMITTER RELEASE; ACTIVE ZONES; FUSION PORE; MODES; EXOCYTOSIS; SYNAPSES;
D O I
10.1523/JNEUROSCI.4518-07.2008
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In small presynaptic boutons in brain, synaptic vesicles are thought not to merge with the plasma membrane when they release transmitter, but instead to close their fusion pores and survive intact for future use ( kiss-and-run exocytosis). The strongest evidence for this idea is the slow and incomplete release of the fluorescent membrane marker, FM1-43 [N-(3-triethylammoniumpropyl)-4-(4-(dibutylamino) styryl) pyridinium dibromide], from single vesicles. We investigated the release of FM1-43 from sparse cultures of hippocampal neurons grown on coverslips with no glia. This allowed presynaptic boutons to be imaged at favorable signal-to-noise ratio. Sparingly stained boutons were imaged at high time resolution, while high-frequency electrical stimulation caused exocytosis. The release of FM1-43 was quantal and occurred in abrupt steps, each representing a single fusion event. The fluorescence of vesicle clusters traveling along axons had a distribution with the same quantal size, indicating that a vesicle releases all the dye it contains. In most fusion events, the time constant of dye release was < 100 ms, and slower release was rarely observed. After exocytosis, no FM1-43 could be detected in the axon to either side of a bouton, indicating that dye was released before it could spread. Our results are consistent with synaptic vesicles fusing fully with the plasma membrane during high-frequency stimulation.
引用
收藏
页码:1894 / 1903
页数:10
相关论文
共 40 条
[1]  
[Anonymous], 1980, MATH DIFFUSION
[2]   Single synaptic vesicles fusing transiently and successively without loss of identity [J].
Aravanis, AM ;
Pyle, JL ;
Tsien, RW .
NATURE, 2003, 423 (6940) :643-647
[3]  
Banker G., 1998, Culturing Nerve Cells, DOI [10.7551/mitpress/4913.001.0001, DOI 10.7551/MITPRESS/4913.001.0001]
[4]   OPTICAL MONITORING OF TRANSMITTER RELEASE AND SYNAPTIC VESICLE RECYCLING AT THE FROG NEUROMUSCULAR-JUNCTION [J].
BETZ, WJ ;
BEWICK, GS .
JOURNAL OF PHYSIOLOGY-LONDON, 1993, 460 :287-309
[5]   OPTICAL ANALYSIS OF SYNAPTIC VESICLE RECYCLING AT THE FROG NEUROMUSCULAR-JUNCTION [J].
BETZ, WJ ;
BEWICK, GS .
SCIENCE, 1992, 255 (5041) :200-203
[6]   INTRACELLULAR MOVEMENTS OF FLUORESCENTLY LABELED SYNAPTIC VESICLES IN FROG MOTOR-NERVE TERMINALS DURING NERVE-STIMULATION [J].
BETZ, WJ ;
BEWICK, GS ;
RIDGE, RMAP .
NEURON, 1992, 9 (05) :805-813
[7]   THE END-PLATE POTENTIAL IN MAMMALIAN MUSCLE [J].
BOYD, IA ;
MARTIN, AR .
JOURNAL OF PHYSIOLOGY-LONDON, 1956, 132 (01) :74-91
[8]   Monitoring secretory membrane with FM1-43 fluorescence [J].
Cochilla, AJ ;
Angleson, JK ;
Betz, WJ .
ANNUAL REVIEW OF NEUROSCIENCE, 1999, 22 :1-10
[9]  
CURRAN MJ, 1993, J MEMBRANE BIOL, V133, P61
[10]   Constitutive sharing of recycling synaptic vesicles between presynaptic boutons [J].
Darcy, KJ ;
Staras, K ;
Collinson, LM ;
Goda, Y .
NATURE NEUROSCIENCE, 2006, 9 (03) :315-321