Departamento de Anatomía, Histología y Neurociencia, Facultad de Medicina, Universidad Autónoma de Madrid, Madrid, 28029, Spain.
Departamento de Anatomía, Histología y Neurociencia, Facultad de Medicina, Universidad Autónoma de Madrid, Madrid, 28029, Spain; Departamento de Ciencias Médicas Básicas-Área Fisiología, Facultad de Medicina, Universidad de La Laguna, Tenerife, Spain.
Neuroscience. 2019 Oct 15;418:149-156. doi: 10.1016/j.neuroscience.2019.08.029. Epub 2019 Aug 23.
Dendritic calcium (Ca) spikes play a key role in the genesis of long-term synaptic plasticity. Although synaptic plasticity in the infralimbic cortex is critical for the extinction of fear-conditioned memory, the role of Ca-spikes in the induction of synaptic plasticity at this cortex has not been explored in depth. Here we show that Ca-spikes in layer 5 pyramidal neurons (L5 PNs) of the rat infralimbic cortex are crucial in the induction of long-term depression of the excitatory postsynaptic currents (EPSCs). The lack of effect on the postsynaptic currents evoked by puffing glutamate and the changes in the variance of the EPSC amplitude that paralleled its inhibition suggest that this LTD of the EPSCs is mediated presynaptically. However, its induction requires cytosolic calcium elevations because it is prevented when the recorded L5 PN is loaded with BAPTA. Moreover, it depends on the synthesis of nitric oxide (NO) because it is absent on slices incubated with nitric oxidase synthase inhibitor L-NAME. Therefore, Ca-spikes can trigger LTD of the ESPCs through the NO dependent presynaptic form of synaptic plasticity, thus providing a novel form of inducing synaptic plasticity at L5 PNs of the rat infralimbic cortex.
树突钙 (Ca) 峰在长时程突触可塑性的产生中起着关键作用。尽管边缘下皮质中的突触可塑性对于恐惧条件记忆的消除至关重要,但 Ca 峰在该皮质中诱导突触可塑性的作用尚未得到深入探讨。在这里,我们表明,大鼠边缘下皮质第 5 层锥体神经元 (L5 PN) 中的 Ca 峰对于兴奋性突触后电流 (EPSC) 的长时程抑制诱导至关重要。缺乏对谷氨酸鼓风引起的突触后电流的影响以及 EPSC 幅度方差的变化与其抑制平行,表明这种 EPSC 的 LTD 是通过突触前机制介导的。然而,它的诱导需要细胞质钙的升高,因为当记录的 L5 PN 被 BAPTA 加载时,它会被阻止。此外,它依赖于一氧化氮 (NO) 的合成,因为在与一氧化氮合酶抑制剂 L-NAME 孵育的切片中不存在。因此,Ca 峰可以通过依赖 NO 的突触前形式的突触可塑性触发 EPSC 的 LTD,从而为大鼠边缘下皮质的 L5 PN 诱导突触可塑性提供了一种新形式。