Department of Neuroscience, Columbia University, New YorK, NY, USA.
Mortimer B. Zuckerman Mind Brain Behavior Institute, New YorK, NY, USA.
Mol Psychiatry. 2022 Jun;27(6):2879-2900. doi: 10.1038/s41380-021-01124-y. Epub 2021 May 14.
The hippocampus contains a diverse array of inhibitory interneurons that gate information flow through local cortico-hippocampal circuits to regulate memory storage. Although most studies of interneurons have focused on their role in fast synaptic inhibition mediated by GABA release, different classes of interneurons express unique sets of neuropeptides, many of which have been shown to exert powerful effects on neuronal function and memory when applied pharmacologically. However, relatively little is known about whether and how release of endogenous neuropeptides from inhibitory cells contributes to their behavioral role in regulating memory formation. Here we report that vasoactive intestinal peptide (VIP)-expressing interneurons participate in social memory storage by enhancing information transfer from hippocampal CA3 pyramidal neurons to CA2 pyramidal neurons. Notably, this action depends on release of the neuropeptide enkephalin from VIP neurons, causing long-term depression of feedforward inhibition onto CA2 pyramidal cells. Moreover, VIP neuron activity in the CA2 region is increased selectively during exploration of a novel conspecific. Our findings, thus, enhance our appreciation of how GABAergic neurons can regulate synaptic plasticity and mnemonic behavior by demonstrating that such actions can be mediated by release of a specific neuropeptide, rather than through classic fast inhibitory transmission.
海马体中包含多种抑制性中间神经元,这些神经元通过局部皮质-海马回路调节信息流,从而调节记忆存储。尽管大多数中间神经元的研究都集中在由 GABA 释放介导的快速突触抑制作用,但不同类别的中间神经元表达独特的神经肽集合,其中许多在药理学上应用时已被证明对神经元功能和记忆具有强大的影响。然而,关于内源性神经肽从抑制性细胞释放是否以及如何有助于它们在调节记忆形成中的行为作用,相对知之甚少。在这里,我们报告说,血管活性肠肽 (VIP) 表达中间神经元通过增强海马 CA3 锥体神经元到 CA2 锥体神经元的信息传递来参与社交记忆存储。值得注意的是,这种作用取决于 VIP 神经元中内啡肽的释放,导致对 CA2 锥体细胞的前馈抑制的长期抑制。此外,在探索新的同种异体时,CA2 区的 VIP 神经元活性会选择性增加。因此,我们的发现增强了我们对 GABA 能神经元如何通过释放特定神经肽而不是通过经典的快速抑制性传递来调节突触可塑性和记忆行为的认识。