Harata Nobutoshi C, Choi Sukwoo, Pyle Jason L, Aravanis Alexander M, Tsien Richard W
Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, California 94305, USA.
Neuron. 2006 Jan 19;49(2):243-56. doi: 10.1016/j.neuron.2005.12.018.
The kinetics of exo-endocytotic recycling could restrict information transfer at central synapses if neurotransmission were entirely reliant on classical full-collapse fusion. Nonclassical fusion retrieval by kiss-and-run would be kinetically advantageous but remains controversial. We used a hydrophilic quencher, bromophenol blue (BPB), to help detect nonclassical events. Upon stimulation, extracellular BPB entered synaptic vesicles and quenched FM1-43 fluorescence, indicating retention of FM dye beyond first fusion. BPB also quenched fluorescence of VAMP (synaptobrevin-2)-EGFP, thus indicating the timing of first fusion of vesicles in the total recycling pool. Comparison with FM dye destaining revealed that kiss-and-run strongly prevailed over full-collapse fusion at low frequency, giving way to a near-even balance at high frequency. Quickening of kiss-and-run vesicle reuse was also observed at higher frequency in the average single vesicle fluorescence response. Kiss-and-run and reuse could enable hippocampal nerve terminals to conserve scarce vesicular resources when responding to widely varying input patterns.
如果神经传递完全依赖于经典的完全塌陷融合,胞吐-内吞循环的动力学可能会限制中枢突触处的信息传递。通过吻-跑方式进行的非经典融合回收在动力学上具有优势,但仍存在争议。我们使用了一种亲水性淬灭剂溴酚蓝(BPB)来帮助检测非经典事件。受到刺激时,细胞外的BPB进入突触小泡并淬灭FM1-43荧光,这表明FM染料在首次融合后仍被保留。BPB还淬灭了VAMP(突触囊泡蛋白-2)-EGFP的荧光,从而表明了总回收池中囊泡首次融合的时间。与FM染料脱色的比较显示,在低频时吻-跑方式明显比完全塌陷融合更为普遍,而在高频时两者几乎达到平衡。在平均单个囊泡荧光反应中,较高频率下也观察到吻-跑囊泡再利用的加快。当应对广泛变化的输入模式时,吻-跑和再利用能够使海马神经末梢节省稀缺的囊泡资源。