首页> 美国卫生研究院文献>The Journal of Neuroscience >Spike-Timing-Dependent Plasticity of Neocortical Excitatory Synapses on Inhibitory Interneurons Depends on Target Cell Type
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Spike-Timing-Dependent Plasticity of Neocortical Excitatory Synapses on Inhibitory Interneurons Depends on Target Cell Type

机译:新皮质兴奋性突触对抑制性中间神经元的穗时间依赖性可塑性取决于靶细胞类型。

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摘要

Repetitive correlated spiking can induce long-term potentiation (LTP) and long-term depression (LTD) of many excitatory synapses on glutamatergic neurons, in a manner that depends on the timing of presynaptic and postsynaptic spiking. However, it is mostly unknown whether and how such spike-timing-dependent plasticity (STDP) operates at neocortical excitatory synapses on inhibitory interneurons, which have diverse physiological and morphological characteristics. In this study, we found that these synapses exhibit target-cell-dependent STDP. In layer 2/3 of the somatosensory cortex, the pyramidal cell (PC) forms divergent synapses on fast spiking (FS) and low-threshold spiking (LTS) interneurons that exhibit short-term synaptic depression and facilitation in response to high-frequency stimulation, respectively. At PC-LTS synapses, repetitive correlated spiking induced LTP or LTD, depending on the timing of presynaptic and postsynaptic spiking. However, regardless of the timing and frequency of spiking, correlated activity induced only LTD at PC-FS synapses. This target-cell-specific STDP was not caused by the difference in the short-term plasticity between these two types of synapses. Activation of postsynaptic NMDA subtype of glutamate receptors (NMDARs) was required for LTP induction at PC-LTS synapses, whereas activation of metabotropic glutamate receptors was required for LTD induction at both PC-LTS and PC-FS synapses. Additional analysis of synaptic currents suggests that LTP and LTD of PC-LTS synapses, but not LTD of PC-FS synapses, involves presynaptic modifications. Such dependence of both the induction and expression of STDP on the type of postsynaptic interneurons may contribute to differential processing and storage of information in cortical local circuits.
机译:重复相关的尖峰可以诱导谷氨酸能神经元上许多兴奋性突触的长期增强(LTP)和长期抑制(LTD),其方式取决于突触前和突触后尖峰的时间。然而,几乎未知的是,这种依赖于尖峰时间的可塑性(STDP)是否以及如何在抑制性中间神经元的新皮层兴奋性突触上起作用,这些中间神经元具有多种生理和形态特征。在这项研究中,我们发现这些突触表现出靶细胞依赖性STDP。在体感皮层的2/3层中,锥体细胞(PC)在快速刺突(FS)和低阈值刺突(LTS)中枢神经元上形成发散突触,这些突触中枢神经元表现出短期突触抑制和响应高频刺激的促进作用, 分别。在PC-LTS突触中,重复相关的尖峰诱导LTP或LTD,具体取决于突触前和突触后尖峰的时间。但是,无论加标的时间和频率如何,相关活动仅在PC-FS突触处诱导LTD。该靶细胞特异性STDP不是由这两种突触之间的短期可塑性差异引起的。在PC-LTS突触中LTP诱导需要激活突触后谷氨酸受体(NMDARs)NMDA亚型,而在PC-LTS和PC-FS突触中LTD诱导需要代谢型谷氨酸受体的激活。突触电流的其他分析表明,PC-LTS突触的LTP和LTD,而不是PC-FS突触的LTD,涉及突触前修饰。 STDP的诱导和表达对突触后神经元类型的这种依赖性可能有助于皮质局部回路中信息的差异处理和存储。

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