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同一运动轴突不同分支处的易化和抑制:释放过程中突触前差异的证据。

Facilitation and depression at different branches of the same motor axon: evidence for presynaptic differences in release.

作者信息

Katz P S, Kirk M D, Govind C K

机构信息

Department of Neurobiology and Anatomy, University of Texas Medical School, Houston 77225.

出版信息

J Neurosci. 1993 Jul;13(7):3075-89. doi: 10.1523/JNEUROSCI.13-07-03075.1993.

Abstract

This study provides evidence that a neuron can exhibit differences in activity-dependent transmitter release at two synaptic sites due to variations in the properties of its presynaptic terminals. Two muscles in the stomatogastric system of the lobster Homarus americanus are innervated by a single motor neuron but respond differently to that motor neuron's input, resulting in two different movements evoked by one motor neuron. During continued motor neuron stimulation, the gm8 muscle contracts slowly and maintains contraction, while the gm9 muscle contracts rapidly and then relaxes. These different muscle responses can be accounted for, in large part, by the properties of the respective neuromuscular synapses: the excitatory junctional potentials recorded in gm8 are initially small but summate and facilitate with repeated stimulation, while those in gm9 are initially large but depress with repeated stimulation. Presynaptic differences in neurotransmitter release contribute strongly to the divergent responses; reduction of the excitatory junction potential amplitude by partial postsynaptic receptor blockade or by desensitization does not change the amount of depression at gm9. However, reduction of neurotransmitter release with low-Ca2+, high-Mg2+ saline removes gm9 synaptic depression and reveals that both neuromuscular junctions exhibit frequency-dependent homosynaptic facilitation. Postsynaptic differences in muscle input resistance and muscle composition may enhance the effects of the divergent release properties, but are not responsible for the activity-dependent changes. Ultrastructural features of the nerve terminals on the two muscles are consistent with the differential output of the terminals; the synapses on gm9 are larger and have more presynaptic dense bars than their counterparts on gm8. These data suggest that the basis for the differences in transmitter release between the two muscles may be a higher density of release sites in the gm9 synapses that leads to a higher output of neurotransmitter, rapid depletion of transmitter stores, and synaptic depression.

摘要

本研究提供了证据表明,由于其突触前终末特性的差异,一个神经元在两个突触位点可表现出与活动相关的递质释放差异。美洲螯龙虾口胃系统中的两块肌肉由单个运动神经元支配,但对该运动神经元的输入反应不同,导致由一个运动神经元诱发两种不同的运动。在持续的运动神经元刺激期间,gm8肌肉缓慢收缩并维持收缩状态,而gm9肌肉快速收缩然后松弛。这些不同的肌肉反应在很大程度上可由各自神经肌肉突触的特性来解释:在gm8中记录到的兴奋性接头电位最初较小,但会总和并随着重复刺激而增强,而在gm9中的兴奋性接头电位最初较大,但随着重复刺激而衰减。神经递质释放的突触前差异对这种不同反应有很大贡献;通过部分突触后受体阻断或脱敏来降低兴奋性接头电位幅度并不会改变gm9处的衰减量。然而,用低钙、高镁盐溶液降低神经递质释放可消除gm9突触的衰减,并揭示两个神经肌肉接头均表现出频率依赖性的同突触易化。肌肉输入电阻和肌肉组成方面的突触后差异可能会增强不同释放特性的影响,但并非活动依赖性变化的原因。两块肌肉上神经终末的超微结构特征与终末的不同输出一致;gm9上的突触比gm8上的对应突触更大且有更多的突触前致密棒。这些数据表明,两块肌肉之间递质释放差异的基础可能是gm9突触中释放位点的密度更高,这导致神经递质输出更高、递质储备快速耗尽以及突触衰减。

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