Wen Hua, Hubbard Jeffrey M, Rakela Benjamin, Linhoff Michael W, Mandel Gail, Brehm Paul
Vollum Institute, Oregon Health and Science University, Portland, United States.
Elife. 2013 Dec 24;2:e01206. doi: 10.7554/eLife.01206.
Asynchronous transmission plays a prominent role at certain synapses but lacks the mechanistic insights of its synchronous counterpart. The current view posits that triggering of asynchronous release during repetitive stimulation involves expansion of the same calcium domains underlying synchronous transmission. In this study, live imaging and paired patch clamp recording at the zebrafish neuromuscular synapse reveal contributions by spatially distinct calcium sources. Synchronous release is tied to calcium entry into synaptic boutons via P/Q type calcium channels, whereas asynchronous release is boosted by a propagating intracellular calcium source initiated at off-synaptic locations in the axon and axonal branch points. This secondary calcium source fully accounts for the persistence following termination of the stimulus and sensitivity to slow calcium buffers reported for asynchronous release. The neuromuscular junction and CNS neurons share these features, raising the possibility that secondary calcium sources are common among synapses with prominent asynchronous release. DOI: http://dx.doi.org/10.7554/eLife.01206.001.
异步传递在某些突触中起着重要作用,但缺乏对其同步对应物的机制性见解。目前的观点认为,重复刺激期间异步释放的触发涉及与同步传递相同的钙域的扩展。在这项研究中,斑马鱼神经肌肉突触的实时成像和配对膜片钳记录揭示了空间上不同的钙源的作用。同步释放与通过P/Q型钙通道进入突触小体的钙内流有关,而异步释放则由轴突和轴突分支点的突触外位置起始的传播性细胞内钙源增强。这种继发性钙源完全解释了刺激终止后的持续性以及异步释放对慢钙缓冲剂的敏感性。神经肌肉接头和中枢神经系统神经元具有这些特征,这增加了继发性钙源在具有显著异步释放的突触中很常见的可能性。DOI: http://dx.doi.org/10.7554/eLife.01206.001