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Vasoactive Intestinal Polypeptide-Immunoreactive Interneurons within Circuits of the Mouse Basolateral Amygdala

机译:小鼠基底外侧杏仁核回路内的血管活性肠多肽-免疫反应中间神经元。

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摘要

In cortical structures, principal cell activity is tightly regulated by different GABAergic interneurons (INs). Among these INs are vasoactive intestinal polypeptide-expressing (VIP+) INs, which innervate preferentially other INs, providing a structural basis for temporal disinhibition of principal cells. However, relatively little is known about VIP+ INs in the amygdaloid basolateral complex (BLA). In this study, we report that VIP+ INs have a variable density in the distinct subdivisions of the mouse BLA. Based on different anatomical, neurochemical, and electrophysiological criteria, VIP+ INs could be identified as IN-selective INs (IS-INs) and basket cells expressing CB1 cannabinoid receptors. Whole-cell recordings of VIP+ IS-INs revealed three different spiking patterns, none of which was associated with the expression of calretinin. Genetic targeting combined with optogenetics and in vitro recordings enabled us to identify several types of BLA INs innervated by VIP+ INs, including other IS-INs, basket and neurogliaform cells. Moreover, light stimulation of VIP+ basket cell axon terminals, characterized by CB1 sensitivity, evoked IPSPs in ∼20% of principal neurons. Finally, we show that VIP+ INs receive a dense innervation from both GABAergic inputs (although only 10% from other VIP+ INs) and distinct glutamatergic inputs, identified by their expression of different vesicular glutamate transporters.In conclusion, our study provides a wide-range analysis of single-cell properties of VIP+ INs in the mouse BLA and of their intrinsic and extrinsic connectivity. Our results reinforce the evidence that VIP+ INs are structurally and functionally heterogeneous and that this heterogeneity could mediate different roles in amygdala-dependent functions.>SIGNIFICANCE STATEMENT We provide the first comprehensive analysis of the distribution of vasoactive intestinal polypeptide-expressing (VIP+) interneurons (INs) across the entire mouse amygdaloid basolateral complex (BLA), as well as of their morphological and physiological properties. VIP+ INs in the neocortex preferentially target other INs to form a disinhibitory network that facilitates principal cell firing. Our study is the first to demonstrate the presence of such a disinhibitory circuitry in the BLA. We observed structural and functional heterogeneity of these INs and characterized their input/output connectivity. We also identified several types of BLA INs that, when inhibited, may provide a temporal window for principal cell firing and facilitate associative plasticity, e.g., in fear learning.
机译:在皮质结构中,主要的细胞活性受不同的GABA能中间神经元(IN)严格调节。这些IN中有表达血管活性肠多肽的(VIP +)IN,它们优先支配其他IN,从而为暂时抑制主要细胞提供了结构基础。然而,关于杏仁核基底外侧复合体(BLA)中的VIP + IN的了解相对较少。在这项研究中,我们报告VIP + IN在鼠标BLA的不同细分中具有可变的密度。根据不同的解剖,神经化学和电生理标准,可以将VIP + IN识别为IN选择性IN(IS-IN)和表达CB1大麻素受体的篮状细胞。 VIP + IS-IN的全细胞记录揭示了三种不同的加标模式,这些均与钙调蛋白的表达无关。遗传靶向与光遗传学和体外记录相结合,使我们能够鉴定出VIP + IN支配的几种BLA IN,包括其他IS-IN,篮和神经胶质细胞。此外,以CB1敏感性为特征的VIP +篮状细胞轴突末端的光刺激在约20%的主要神经元中引起IPSP。最后,我们显示VIP + IN受到GABA能输入(尽管只有其他VIP + IN的只有10%)和独特的谷氨酸输入受到密集的神经支配,这由它们在不同囊泡谷氨酸转运蛋白的表达中确定。分析小鼠BLA中VIP + IN的单细胞特性及其内在和外在的连通性。我们的研究结果进一步证实了VIP + IN在结构和功能上是异质的,并且这种异质性可以在杏仁核依赖性功能中介导不同的作用。>意义声明我们首次对血管活性肠多肽的分布进行了全面的分析,在整个小鼠杏仁扁桃体基底外侧复合物(BLA)中表达(VIP +)中间神经元(IN)及其形态和生理特性。新皮层中的VIP + IN优先靶向其他IN,以形成促进主细胞激发的去抑制网络。我们的研究首次证明了BLA中存在这样的抑制性电路。我们观察了这些IN的结构和功能异质性,并表征了它们的输入/输出连接性。我们还鉴定了几种类型的BLA IN,它们在被抑制时可以为主要细胞的激发提供时间窗口并促进联想可塑性,例如在恐惧学习中。

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