首页> 美国卫生研究院文献>The Journal of Neuroscience >Modulation of Distal Calcium Electrogenesis by Neuropeptide Y1 Receptors Inhibits Neocortical Long-Term Depression
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Modulation of Distal Calcium Electrogenesis by Neuropeptide Y1 Receptors Inhibits Neocortical Long-Term Depression

机译:神经肽Y1受体调节远端钙电生成抑制新皮层长期抑郁症。

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摘要

In layer 5 neocortical pyramidal neurons, backpropagating action potentials (bAPs) firing at rates above a critical frequency (CF) induce supralinear Ca2+ influx and regenerative potentials in apical dendrites. Paired temporally with an EPSP, this Ca2+ influx can result in synaptic plasticity. We studied the actions of neuropeptide Y (NPY), an abundant neocortical neuropeptide, on Ca2+ influx in layer 5 pyramidal neurons of somatosensory neocortex in Sprague Dawley and Wistar rats, using a combination of somatic and dendritic intracellular recordings and simultaneous Ca2+ imaging. Ca2+ influx induced by trains of bAPs above a neuron's CF was inhibited by NPY, acting only at the distal dendrite, via Y1 receptors. NPY does not affect evoked synaptic glutamate release, paired synaptic facilitation, or synaptic rundown in longer trains. Extracellular Cs+ did not prevent NPY's postsynaptic effects, suggesting it does not act via either G-protein-activated inwardly rectifying K+ conductance (GIRK) or hyperpolarization-activated, cyclic nucleotide-gated channels. NPY application suppresses the induction of the long-term depression (LTD) normally caused by pairing 100 EPSPs with bursts of 2 bAPs evoked at a supracritical frequency. These findings suggest that distal dendritic Ca2+ influx is necessary for LTD induction, and selective inhibition of this distal dendritic Ca2+ influx by NPY can thus regulate synaptic plasticity in layer 5 pyramidal neurons.
机译:在第5层新皮层锥体神经元中,以高于临界频率(CF)的速率激发的反向传播动作电位(bAPs)会在根尖树突中诱导超线性Ca 2 + 内流和再生电位。 Ca 2 + 流入与EPSP暂时配对,可导致突触可塑性。我们结合体细胞和树突状细胞,研究了Sprague Dawley和Wistar大鼠体感新皮层5层锥体神经元Ca 2 + 内流中丰富的新皮层神经肽Y(NPY)的作用。细胞内记录和同时的Ca 2 + 成像。在神经元CF上方的一系列bAP诱导的Ca 2 + 内流被NPY抑制,仅通过远端的Y1受体作用于远端树突。 NPY不会影响较长火车中诱发的突触谷氨酸释放,成对的突触促进或突触减少。细胞外Cs + 不能阻止NPY的突触后作用,表明它不通过G蛋白激活的内向整流K + 电导(GIRK)或超极化激活的循环来起作用核苷酸门控通道。 NPY应用可抑制通常由将100个EPSP与以超临界频率诱发的2 bAP猝发配对而引起的长期抑郁感(LTD)。这些发现表明远端树突状Ca 2 + 内向流入对于LTD诱导是必要的,而NPY对这种远端树突状Ca 2 + 内向的选择性抑制可因此调节层中突触可塑性。 5个锥体神经元。

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