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快速棘突中间神经元爆炸驱动嗅球中的高保真抑制。

Fast-spiking interneuron detonation drives high-fidelity inhibition in the olfactory bulb.

机构信息

Department of Biological Sciences, Lehigh University, Bethlehem, Pennsylvania, United States of America.

出版信息

PLoS Biol. 2024 Aug 26;22(8):e3002660. doi: 10.1371/journal.pbio.3002660. eCollection 2024 Aug.

Abstract

Inhibitory circuits in the mammalian olfactory bulb (OB) dynamically reformat olfactory information as it propagates from peripheral receptors to downstream cortex. To gain mechanistic insight into how specific OB interneuron types support this sensory processing, we examine unitary synaptic interactions between excitatory mitral and tufted cells (MTCs), the OB projection neurons, and a conserved population of anaxonic external plexiform layer interneurons (EPL-INs) using pair and quartet whole-cell recordings in acute mouse brain slices. Physiological, morphological, neurochemical, and synaptic analyses divide EPL-INs into distinct subtypes and reveal that parvalbumin-expressing fast-spiking EPL-INs (FSIs) perisomatically innervate MTCs with release-competent dendrites and synaptically detonate to mediate fast, short-latency recurrent and lateral inhibition. Sparse MTC synchronization supralinearly increases this high-fidelity inhibition, while sensory afferent activation combined with single-cell silencing reveals that individual FSIs account for a substantial fraction of total network-driven MTC lateral inhibition. OB output is thus powerfully shaped by detonation-driven high-fidelity perisomatic inhibition.

摘要

在哺乳动物嗅球(OB)中,抑制性回路在嗅觉信息从外周受体传播到下游皮层时动态地对其进行重新格式化。为了深入了解特定的 OB 中间神经元类型如何支持这种感觉处理,我们使用急性小鼠脑切片中的成对和四联体全细胞记录来检查兴奋性嗅球投射神经元(mitral 和 tufted cells,MTCs)与保守的无棘突外丛状层中间神经元(anaxonic external plexiform layer interneurons,EPL-INs)之间的单元突触相互作用。生理、形态、神经化学和突触分析将 EPL-INs 分为不同的亚型,并揭示表达 Parvalbumin 的快速放电 EPL-INs(FSIs)通过具有释放能力的树突和突触性爆炸来对 MTC 进行胞体投射,从而介导快速、短潜伏期的局部和侧向抑制。稀疏的 MTC 同步超线性增加了这种高保真抑制,而感觉传入激活结合单细胞沉默揭示了单个 FSIs 占总网络驱动的 MTC 侧向抑制的很大一部分。因此,OB 的输出被爆炸驱动的高保真胞体抑制强烈塑造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4767/11379389/c3fb6d018507/pbio.3002660.g001.jpg

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