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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A specific class of interneuron mediates inhibitory plasticity in the lateral amygdala.
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A specific class of interneuron mediates inhibitory plasticity in the lateral amygdala.

机译:特定类中型细胞介导侧孢菌中的抑制性可塑性。

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摘要

The lateral amygdala (LA) plays a key role in emotional learning and is the main site for sensory input into the amygdala. Within the LA, pyramidal neurons comprise the major cell population with plasticity of inputs to these neurons thought to underlie fear learning. Pyramidal neuron activity is tightly controlled by local interneurons, and GABAergic modulation strongly influences amygdala-dependent learning. Synaptic inputs to some interneurons in the LA can also undergo synaptic plasticity, but the identity of these cells and the mechanisms that underlie this plasticity are not known. Here we show that long-term potentiation (LTP) in LA interneurons is restricted to a specific type of interneuron that is defined by the lack of expression of synaptic NR2B subunits. We find that LTP is only present at cortical inputs to these cells and is initiated by calcium influx via calcium-permeable AMPA receptors. LTP is maintained by trafficking of GluR2-lacking AMPA receptors that require an interaction with SAP97 and the actin cytoskeleton. Our results define a novel population of interneurons in the LA that control principal neuron excitability by feed-forward inhibition of cortical origin. This selective enhanced inhibition may contribute to reducing the activity of principal neurons engaged during extinction of conditioned fear.
机译:横向Amygdala(La)在情感学习中发挥着关键作用,并且是杏仁达拉的感官输入的主要部位。在La内,金字塔神经元包括主要细胞群,这些神经元的投入可塑性被认为是恐惧学习。金字塔内神经元活性受到局部核心紧密控制的,并且加筋药调节强烈影响Amygdala依赖的学习。突触输入到LA中的某些内核也可以进行突触可塑性,而是这些细胞的身份和使这种可塑性的机制尚不清楚。在这里,我们表明,La Interneurons中的长期增强(LTP)仅限于特定类型的中间核,这是通过缺乏突触NR2B亚基的表达而定义的。我们发现LTP仅存在于这些细胞的皮质输入中,并通过钙流入通过钙渗透性AMPA受体引发。 LTP通过贩运缺乏需要与SAP97和肌动蛋白细胞骨架相互作用的GluR2-缺乏的AMPA受体来维持。我们的结果在LA中定义了一种新的群体,通过皮质起源的前馈抑制来控制主神经元兴奋性。这种选择性增强的抑制可能有助于减少在灭绝条件恐惧期间接合的主要神经元的活性。

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