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神经元振荡器的突触和激素调节:对分子机制的探索。

Synaptic and hormonal modulation of a neuronal oscillator: a search for molecular mechanisms.

作者信息

Levitan I B, Harmar A J, Adams W B

出版信息

J Exp Biol. 1979 Aug;81:131-51. doi: 10.1242/jeb.81.1.131.

DOI:10.1242/jeb.81.1.131
PMID:512575
Abstract
  1. The central ganglia of a number of gastropod molluscs (including the marine snail Aplysia californica and the terrestrial snail Helix pomatia) contain neurones which exhibit endogenous patterns of oscillatory activity. 2. This oscillatory activity can be modulated for long periods of time by synaptic and hormonal stimulation. 3. Stimulation of appropriate pre-synaptic nerves causes long-lasting hyperpolarization in these neurones, with complete abolition of oscillatory activity. This synaptic response is mediated by an increase in K+ conductance, together with a decrease in inward (Na+/Ca2+) conductance. The ionic conductances affected by synaptic stimulation are those responsible for producing the rhythmic oscillations. 4. The oscillatory activity can also be modulated by the vertebrate neurohyophyseal peptides, vasopressin and oxytocin, and by an endogenous peptide-containing extract of molluscan ganglia. In contrast to synaptic stimulation, these agents cause an increase in oscillatory activity. 5. The endogenous molluscan factor which produces an increase in oscillatory activity can be purified by affinity chromatography on bovine neurophysin linked to Sepharose. This indicates that the molluscan nervous system may contain a neurohypophyseal-like peptide. 6. Oscillatory activity can be modulated by manipulation of cyclic nucleotide metabolism in these neurones. Increases in cAMP alone are associated with abolition of oscillatory activity; this mimics long-lasting synaptic hyperpolarization. Increases in cAMP and cGMP together are associated with an increase in oscillatory activity and mimic the effects of the vertebrate and molluscan peptides. Thus, it is possible that cyclic nucleotides play a role in these physiological responses.
摘要
  1. 许多腹足纲软体动物(包括海蜗牛加州海兔和陆蜗牛罗马蜗牛)的中枢神经节含有表现出内源性振荡活动模式的神经元。2. 这种振荡活动可通过突触和激素刺激进行长时间调节。3. 刺激适当的突触前神经会使这些神经元产生持久的超极化,振荡活动完全消失。这种突触反应是由钾离子电导增加以及内向(钠离子/钙离子)电导降低介导的。受突触刺激影响的离子电导是产生节律性振荡的原因。4. 振荡活动也可被脊椎动物神经垂体肽、加压素和催产素以及软体动物神经节的内源性含肽提取物调节。与突触刺激相反,这些物质会使振荡活动增加。5. 能使振荡活动增加的内源性软体动物因子可通过与琼脂糖偶联的牛神经垂体素进行亲和层析纯化。这表明软体动物神经系统可能含有类似神经垂体的肽。6. 通过操纵这些神经元中的环核苷酸代谢可调节振荡活动。仅环磷酸腺苷增加与振荡活动消失有关;这模拟了持久的突触超极化。环磷酸腺苷和环磷酸鸟苷一起增加与振荡活动增加有关,并模拟了脊椎动物和软体动物肽的作用。因此,环核苷酸可能在这些生理反应中起作用。

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Synaptic and hormonal modulation of a neuronal oscillator: a search for molecular mechanisms.神经元振荡器的突触和激素调节:对分子机制的探索。
J Exp Biol. 1979 Aug;81:131-51. doi: 10.1242/jeb.81.1.131.
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