首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Frequency-dependent modulation of glycine receptor activation recorded from the zebrafish larvae hindbrain.
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Frequency-dependent modulation of glycine receptor activation recorded from the zebrafish larvae hindbrain.

机译:从斑马鱼幼虫后脑记录的甘氨酸受体激活的频率依赖性调节。

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摘要

In vertebrates, most glycinergic inhibitory neurons discharge phasically at a relatively low frequency. Such a pattern of glycine liberation from presynaptic terminals may affect the kinetics of post-synaptic glycine receptors. To examine this influence, we have analyzed the behavior of glycine receptors in response to repetitive stimulation at frequencies at which consecutive outside-out currents did not superimpose (0.5-4 Hz). Neurotransmitter release was mimicked on outside-out patches from zebrafish hindbrain Mauthner cells using fast flow application techniques. The amplitude of outside-out currents evoked by short (1 ms) repetitive applications of a saturating concentration (3 mM) of glycine remained unchanged for application frequencies1 Hz. Glycine-evoked current simulations using a simple Markov model describing zebrafish glycine receptor kinetic behavior, indicates that this down-regulation of glycine receptor efficacy is due to a progressive accumulation of the receptors in a long lasting desensitization state. Our simulations suggest that this down-regulation can occur even when spontaneous inhibitory currents were generated randomly at a frequency>1 Hz.
机译:在脊椎动物中,大多数甘氨酸抑制性神经元都以相对较低的频率逐步释放。这种从突触前末端释放甘氨酸的模式可能会影响突触后甘氨酸受体的动力学。为了检验这种影响,我们分析了在连续的外向外电流不叠加的频率(0.5-4 Hz)下,甘氨酸受体响应重复刺激的行为。使用快速流应用技术在斑马鱼后脑Mauthner细胞的外向外斑块上模拟神经递质的释放。对于小于或等于1 Hz的施加频率,饱和浓度(3 mM)的甘氨酸短时间(1 ms)重复施加引起的外向外电流的幅度保持不变。当施加频率从1 Hz增加到4 Hz时,外向电流的幅度会随着时间的推移而下降,从而达到稳态水平。电流幅度的这种减小更大,并且随着应用频率的增加发生得更快。当刺激频率降低到1 Hz时恢复。恢复时间常数与应用频率无关。对于非饱和甘氨酸浓度也观察到这种频率依赖性抑制。我们的结果表明,当刺激频率增加到> 1 Hz时,甘氨酸受体活性被下调。使用描述斑马鱼甘氨酸受体动力学行为的简单马尔可夫模型进行的甘氨酸诱发的电流模拟表明,甘氨酸受体功效的这种下调是由于在长期脱敏状态下受体的逐渐积累。我们的模拟表明,即使以大于1 Hz的频率随机产生自发抑制电流,也会发生这种下调。

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