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海兔中已鉴定的肽能神经元R15的突触作用。II. 运动神经元L7介导的胸腹神经节连接的收缩

Synaptic actions of identified peptidergic neuron R15 in Aplysia. II. Contraction of pleuroabdominal connectives mediated by motoneuron L7.

作者信息

Alevizos A, Weiss K R, Koester J

机构信息

Department of Physiology and Cellular Biophysics, College of Physicians and Surgeons, Columbia University, New York, New York 10032.

出版信息

J Neurosci. 1991 May;11(5):1275-81. doi: 10.1523/JNEUROSCI.11-05-01275.1991.

Abstract

The purpose of this study was to determine the synaptic actions of the bursting peptidergic neuron R15 in Aplysia. R15 is known to be excited by the neuroendocrine bag cells, which trigger egg laying. In the two companion papers, we show that R15 mediates some of the effects of the bag cells on respiratory and reproductive organs. In this paper, we demonstrate that R15 excites L7, a multimodal motoneuron located in the abdominal ganglion. Although L7 excites several types of muscle fibers as well as neurons, the excitation of L7 by R15 is probably strong enough to cause contraction only of the sheath muscle of the pleuroabdominal connectives, which has an exceptionally low threshold for activation. The excitatory actions of R15 on L7, which desensitize profoundly, appear to be mediated by R15 alpha 1 peptide. The synaptic action of R15 on L7 and on the respiratory pumping system (Alevizos et al., 1991a) can be fully expressed only if R15 is first silenced for 2 hr by injection of hyperpolarizing current. A similar protocol for eliminating desensitization may prove to be generally useful for revealing the synaptic actions of other spontaneously active neurons that have rapidly desensitizing postsynaptic actions.

摘要

本研究的目的是确定海兔中爆发性肽能神经元R15的突触作用。已知R15会被触发产卵的神经内分泌袋状细胞所兴奋。在两篇相关论文中,我们表明R15介导了袋状细胞对呼吸和生殖器官的一些作用。在本文中,我们证明R15会兴奋L7,L7是位于腹神经节的一种多模式运动神经元。尽管L7会兴奋几种类型的肌纤维以及神经元,但R15对L7的兴奋作用可能强大到足以仅引起胸膜腹侧结缔组织鞘肌的收缩,该鞘肌的激活阈值异常低。R15对L7的兴奋作用会发生深度脱敏,这似乎是由R15α1肽介导的。只有在通过注入超极化电流使R15先沉默2小时后,R15对L7以及对呼吸泵系统(Alevizos等人,1991a)的突触作用才能完全表达出来。一种类似的消除脱敏的方案可能被证明普遍适用于揭示其他具有快速脱敏突触后作用的自发活动神经元的突触作用。

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