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甲壳类动物肢体肌肉中共同抑制性运动神经元和兴奋性运动神经元之间的相互轴突-轴突突触。

Reciprocal axo-axonal synapses between the common inhibitor and excitor motoneurons in crustacean limb muscles.

作者信息

Pearce J, Govind C K

机构信息

Life Sciences Division, Scarborough College, University of Toronto, Ontario, Canada.

出版信息

J Neurocytol. 1993 Apr;22(4):259-65. doi: 10.1007/BF01187124.

Abstract

Nerve terminals of the common inhibitor motoneuron in a crab (Eriphia spiniforns) limb closer muscle and in a crayfish (Procambarus clarkii) limb accessory flexor muscle make neuromuscular synapses with the muscle membrane (postsynaptic inhibition) as well as axo-axonal synapses with the terminals of the excitatory axon (presynaptic inhibition). That transmission is from the inhibitor to the excitor terminals at these axo-axonal synapses is indicated by the occurrence on the inhibitor membrane of presynaptic dense bars denoting sites of transmitter release. Axo-axonal synapses with the opposite polarity, in which transmission is from an excitatory onto an inhibitory terminal, were occasionally seen either adjacent to or separate from the inhibitory axo-axonal synapse. Nerve terminals of the specific inhibitor in the crayfish opener muscle were seen to make numerous axo-axonal output synapses upon excitatory nerve terminals but excitor nerve terminals were not seen to make output synapses onto inhibitor terminals. Thus reciprocal axo-axonal synapses appear to be a feature of the common inhibitor but not of the specific inhibitor. The excitor-to-inhibitor component of these reciprocal synapses may serve to limit transmitter output in the common inhibitor axon by activating glutamateB receptors which facilitate efflux of K+ and hyperpolarization of the membrane.

摘要

螃蟹(Eriphia spiniforns)肢体闭合肌和小龙虾(Procambarus clarkii)肢体副屈肌中共同抑制性运动神经元的神经末梢,与肌膜形成神经肌肉突触(突触后抑制),同时与兴奋性轴突的末梢形成轴-轴突触(突触前抑制)。在抑制性膜上出现表示递质释放部位的突触前致密小条,表明在这些轴-轴突触处传递是从抑制性神经元到兴奋性神经元末梢。偶尔会在抑制性轴-轴突触附近或与之分开处,看到极性相反的轴-轴突触,即传递是从兴奋性神经元到抑制性末梢。小龙虾开肌中特异性抑制性神经元的神经末梢,在兴奋性神经末梢上形成大量轴-轴输出突触,但未看到兴奋性神经末梢在抑制性末梢上形成输出突触。因此,双向轴-轴突触似乎是共同抑制性神经元的一个特征,而非特异性抑制性神经元的特征。这些双向突触中从兴奋性神经元到抑制性神经元的成分,可能通过激活促进K+外流和膜超极化的谷氨酸B受体,来限制共同抑制性轴突中的递质输出。

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