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嗅球颗粒细胞:专门用于连接协同活跃的肾小球柱,以产生感知和区分气味。

Olfactory bulb granule cells: specialized to link coactive glomerular columns for percept generation and discrimination of odors.

机构信息

Institute of Zoology, Regensburg University, Universitätsstr. 30, 93040, Regensburg, Germany.

Department of Functional Neuroanatomy, Institute for Anatomy and Cell Biology, Heidelberg University, Im Neuenheimer Feld 307, 69120, Heidelberg, Germany.

出版信息

Cell Tissue Res. 2021 Jan;383(1):495-506. doi: 10.1007/s00441-020-03402-7. Epub 2021 Jan 6.

Abstract

The role of granule cells in olfactory processing is surrounded by several enigmatic observations, such as the purpose of reciprocal spines and the mechanisms for GABA release, the apparently low firing activity and recurrent inhibitory drive of granule cells, the missing proof for functional reciprocal connectivity, and the apparently negligible contribution to lateral inhibition. Here, we summarize recent results with regard to both the mechanisms of GABA release and the behavioral relevance of granule cell activity during odor discrimination. We outline a novel hypothesis that has the potential to resolve most of these enigmas and allows further predictions on the function of granule cells in odor processing. Briefly, recent findings imply that GABA release from the reciprocal spine requires a local spine action potential and the cooperative action of NMDA receptors and high voltage-activated Ca channels. Thus, lateral inhibition is conditional on activity in the principal neurons connected to a granule cell and tightly intertwined with recurrent inhibition. This notion allows us to infer that lateral inhibition between principal neurons occurs "on demand," i.e., selectively on coactive mitral and tufted cells, and thus can provide directed, dynamically switched lateral inhibition in a sensory system with 1000 input channels organized in glomerular columns. The mechanistic underpinnings of this hypothesis concur with findings from odor discrimination behavior in mice with synaptic proteins deleted in granule cells. In summary, our hypothesis explains the unusual microcircuit of the granule cell reciprocal spine as a means of olfactory combinatorial coding.

摘要

颗粒细胞在嗅觉处理中的作用存在一些令人费解的观察结果,例如互传棘的目的和 GABA 释放的机制、颗粒细胞明显较低的放电活动和复发性抑制驱动、功能互传连接缺失的证据,以及对侧抑制的贡献显然可以忽略不计。在这里,我们总结了最近关于 GABA 释放机制以及在气味辨别过程中颗粒细胞活动的行为相关性的结果。我们概述了一个新的假设,该假设有可能解决这些谜团中的大多数问题,并对颗粒细胞在嗅觉处理中的功能做出进一步预测。简而言之,最近的发现表明,来自互传棘的 GABA 释放需要局部棘突动作电位和 NMDA 受体和高电压激活 Ca 通道的协同作用。因此,侧抑制取决于与颗粒细胞相连的主神经元的活动,并与复发性抑制紧密交织。这个概念使我们能够推断出主神经元之间的侧抑制是“按需”发生的,即在共同活跃的僧帽细胞和丛状细胞上选择性地发生,从而可以在以肾小球柱组织的 1000 个输入通道为特征的感觉系统中提供定向、动态切换的侧抑制。该假设的机械基础与颗粒细胞中突触蛋白缺失的小鼠的气味辨别行为的发现一致。总之,我们的假设将颗粒细胞互传棘的不寻常微电路解释为嗅觉组合编码的一种手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3121/7873091/9290f1605e70/441_2020_3402_Fig1_HTML.jpg

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