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神经节突触前递质储备逐渐耗竭时递质释放的量子机制。半胱氨酸-3的作用及硫胺素缺乏。

Quantal mechanism of transmitter release during progressive depletion of the presynaptic stores at a ganglionic synapse. The action of hemicholinium-3 and thiamine deprivation.

作者信息

Sacchi O, Perri V

出版信息

J Gen Physiol. 1973 Mar;61(3):342-60. doi: 10.1085/jgp.61.3.342.

Abstract

In the present experiments we interfered with the mechanism of acetylcholine (ACh) synthesis in the rat superior cervical ganglion by impairing the supply of either the choline group (hemicholinium no. 3 [HC-3]treatment) or the acetyl group (thiamine deprivation). Under both conditions stimulation causes in the ganglion a progressive decline in ACh output associated with a depletion of transmitter tissue content. ACh release from the terminals of a single preganglionic fiber was estimated from the quantum content value of the evoked excitatory postsynaptic potentials (EPSP's) recorded intracellularly in the ganglion neuron under test. The present observations indicate that Poisson statistics describe transmitter release at either low or high release levels. Furthermore, the progressive decline in the rate of ACh output occurring during repetitive stimulation is shown to correspond to a progressive decrease in the number of transmitter quanta released per impulse and not to any modification in the size of individual quanta. Some 8,000 transmitter quanta proved to represent the presynaptic transmitter store initially present in those terminals on a neuron that are activated by stimulation of a single preganglionic fiber. Speculations are considered about synaptic efficacy and nerve connections in rat autonomic ganglia. It is suggested that six preganglionic fibers represent the mean input to a ganglion neuron.

摘要

在目前的实验中,我们通过损害胆碱基团(用3号半胆碱 [HC-3] 处理)或乙酰基团(硫胺素缺乏)的供应,来干扰大鼠颈上神经节中乙酰胆碱(ACh)的合成机制。在这两种情况下,刺激均会导致神经节中ACh释放量逐渐下降,并伴有递质组织含量的耗尽。从测试神经节神经元细胞内记录的诱发兴奋性突触后电位(EPSP)的量子含量值,估算来自单个节前纤维终末的ACh释放量。目前的观察结果表明,泊松统计描述了低释放水平或高释放水平时的递质释放。此外,重复刺激期间ACh释放速率的逐渐下降表明,其对应于每个冲动释放的递质量子数量的逐渐减少,而不是单个量子大小的任何改变。约8000个递质量子被证明代表最初存在于神经元终末的突触前递质储备,这些终末通过单个节前纤维的刺激而被激活。文中还对大鼠自主神经节中的突触效能和神经连接进行了推测。有人提出,六条节前纤维代表了一个神经节神经元的平均输入。

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