Barclay Jeff W, Morgan Alan, Burgoyne Robert D
Physiological Laboratory, School of Biomedical Sciences, University of Liverpool, Crown Street, Liverpool L69 3BX, UK.
Cell Calcium. 2005 Sep-Oct;38(3-4):343-53. doi: 10.1016/j.ceca.2005.06.012.
A rapid increase in intracellular calcium directly triggers regulated exocytosis. In addition, changes in intracellular calcium concentration can adjust the extent of exocytosis (quantal content) or the magnitude of individual release events (quantal size) in both the short- and long-term. It is generally agreed that calcium achieves this regulation via an interaction with a number of different molecular targets located at or near to the site of membrane fusion. We review here the synaptic proteins with defined calcium-binding domains and protein kinases activated by calcium, summarize what is known about their function in membrane fusion and the experimental evidence in support of their involvement in synaptic plasticity.
细胞内钙的快速增加直接触发调节性胞吐作用。此外,细胞内钙浓度的变化可在短期和长期内调节胞吐作用的程度(量子含量)或单个释放事件的大小(量子大小)。人们普遍认为,钙通过与位于膜融合位点或其附近的许多不同分子靶点相互作用来实现这种调节。我们在此回顾具有明确钙结合结构域的突触蛋白和由钙激活的蛋白激酶,总结关于它们在膜融合中的功能以及支持它们参与突触可塑性的实验证据。