Atluri P P, Regehr W G
Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Neurosci. 1998 Oct 15;18(20):8214-27. doi: 10.1523/JNEUROSCI.18-20-08214.1998.
At fast chemical synapses the rapid release of neurotransmitter that occurs within a few milliseconds of an action potential is followed by a more sustained elevation of release probability, known as delayed release. Here we characterize the role of calcium in delayed release and test the hypothesis that facilitation and delayed release share a common mechanism. Synapses between cerebellar granule cells and their postsynaptic targets, stellate cells and Purkinje cells, were studied in rat brain slices. Presynaptic calcium transients were measured with calcium-sensitive fluorophores, and delayed release was detected with whole-cell recordings. Calcium influx, presynaptic calcium dynamics, and the number of stimulus pulses were altered to assess their effect on delayed release and facilitation. Following single stimuli, delayed release can be separated into two components: one lasting for tens of milliseconds that is steeply calcium-dependent, the other lasting for hundreds of milliseconds that is driven by low levels of calcium with a nearly linear calcium dependence. The amplitude, calcium dependence, and magnitude of delayed release do not correspond to those of facilitation, indicating that these processes are not simple reflections of a shared mechanism. The steep calcium dependence of delayed release, combined with the large calcium transients observed in these presynaptic terminals, suggests that for physiological conditions delayed release provides a way for cells to influence their postsynaptic targets long after their own action potential activity has subsided.
在快速化学突触中,动作电位发生后几毫秒内神经递质的快速释放之后会出现释放概率更为持久的升高,即延迟释放。在此,我们描述了钙在延迟释放中的作用,并检验了易化和延迟释放具有共同机制这一假说。在大鼠脑片中研究了小脑颗粒细胞与其突触后靶细胞(星状细胞和浦肯野细胞)之间的突触。用钙敏荧光团测量突触前钙瞬变,并用全细胞记录检测延迟释放。改变钙内流、突触前钙动力学和刺激脉冲数,以评估它们对延迟释放和易化的影响。单个刺激后,延迟释放可分为两个成分:一个持续数十毫秒,对钙高度依赖;另一个持续数百毫秒,由低水平钙驱动,钙依赖性接近线性。延迟释放的幅度、钙依赖性和大小与易化的幅度、钙依赖性和大小不对应,表明这些过程并非共享机制的简单反映。延迟释放对钙的高度依赖性,加上在这些突触前终末观察到的大的钙瞬变,表明在生理条件下,延迟释放为细胞在自身动作电位活动消退很久之后影响其突触后靶细胞提供了一种方式。