The Physiological Laboratory, School of Biomedical Sciences, University of Liverpool, Crown Street, Liverpool L69 3BX, United Kingdom.
Cold Spring Harb Perspect Biol. 2010 Aug;2(8):a004085. doi: 10.1101/cshperspect.a004085. Epub 2010 Jul 28.
Calcium signaling in neurons as in other cell types mediates changes in gene expression, cell growth, development, survival, and cell death. However, neuronal Ca(2+) signaling processes have become adapted to modulate the function of other important pathways including axon outgrowth and changes in synaptic strength. Ca(2+) plays a key role as the trigger for fast neurotransmitter release. The ubiquitous Ca(2+) sensor calmodulin is involved in various aspects of neuronal regulation. The mechanisms by which changes in intracellular Ca(2+) concentration in neurons can bring about such diverse responses has, however, become a topic of widespread interest that has recently focused on the roles of specialized neuronal Ca(2+) sensors. In this article, we summarize synaptotagmins in neurotransmitter release, the neuronal roles of calmodulin, and the functional significance of the NCS and the CaBP/calneuron protein families of neuronal Ca(2+) sensors.
钙信号在神经元中与在其他细胞类型中一样,介导基因表达、细胞生长、发育、存活和细胞死亡的变化。然而,神经元钙信号转导过程已经适应于调节其他重要途径的功能,包括轴突生长和突触强度的变化。钙作为触发快速神经递质释放的关键因素发挥作用。普遍存在的钙传感器钙调蛋白参与神经元调节的各个方面。然而,细胞内钙浓度变化如何导致神经元产生如此多样化的反应已成为广泛关注的话题,最近的研究重点集中在专门的神经元钙传感器的作用上。在本文中,我们总结了神经递质释放中的突触结合蛋白、钙调蛋白的神经元作用,以及神经元钙传感器的 NCS 和 CaBP/calneuron 蛋白家族的功能意义。