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空间分散的突触通过树突棘起始产生精确调谐的位置细胞反应。

Spatially dispersed synapses yield sharply-tuned place cell responses through dendritic spike initiation.

机构信息

Cellular Neurophysiology Laboratory, Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.

出版信息

J Physiol. 2018 Sep;596(17):4173-4205. doi: 10.1113/JP275310. Epub 2018 Jul 17.

Abstract

KEY POINTS

The generation of dendritic spikes and the consequent sharp tuning of neuronal responses are together attainable even when iso-feature synapses are randomly dispersed across the dendritic arbor. Disparate combinations of channel conductances with distinct configurations of randomly dispersed place field synapses concomitantly yield similar sharp tuning profiles and similar functional maps of several intrinsic properties. Targeted synaptic plasticity converts silent cells to place cells for specific place fields in models with disparate channel combinations that receive dispersed synaptic inputs from multiple place field locations. Dispersed localization of iso-feature synapses is a strong candidate for achieving sharp feature selectivity in neurons across sensory-perceptual systems, with several degrees of freedom in relation to synaptic locations. Quantitative evidence for the possibility that degeneracy (i.e. the ability of disparate structural components to yield similar functional outcomes) could act as a broad framework that effectively accomplishes the twin goals of input-feature encoding and homeostasis of intrinsic properties without cross interferences.

ABSTRACT

A prominent hypothesis spanning several sensory-perceptual systems implicates spatially clustered synapses in the generation of dendritic spikes that mediate sharply-tuned neuronal responses to input features. In this conductance-based morphologically-precise computational study, we tested this hypothesis by systematically analysing the impact of distinct synaptic and channel localization profiles on sharpness of spatial tuning in hippocampal pyramidal neurons. We found that the generation of dendritic spikes, the emergence of an excitatory ramp in somatic voltage responses, the expression of several intrinsic somatodendritic functional maps and sharp tuning of place-cell responses were all attainable even when iso-feature synapses are randomly dispersed across the dendritic arbor of models with disparate channel combinations. Strikingly, the generation and propagation of dendritic spikes, reliant on dendritic sodium channels and N-methyl-d-asparate receptors, mediated the sharpness of spatial tuning achieved with dispersed synaptic localization. To ensure that our results were not artefacts of narrow parametric choices, we confirmed these conclusions with independent multiparametric stochastic search algorithms spanning thousands of unique models for each synaptic localization scenario. Next, employing virtual knockout models, we demonstrated a vital role for dendritically expressed voltage-gated ion channels, especially the transient potassium channels, in maintaining sharpness of place-cell tuning. Importantly, we established that synaptic potentiation targeted to afferents from one specific place field was sufficient to impart place field selectivity even when intrinsically disparate neurons received randomly dispersed afferents from multiple place field locations. Our results provide quantitative evidence for disparate combinations of channel and synaptic localization profiles to concomitantly yield similar tuning and similar intrinsic properties.

摘要

要点

即使同特征突触随机分散在树突分支上,树突棘的产生和神经元反应的尖锐调谐也可以同时实现。具有不同构型的通道电导与随机分散的位置场突触的组合,同时产生类似的尖锐调谐曲线和几个固有特性的相似功能图谱。靶向突触可塑性将沉默细胞转换为特定位置场的位置细胞,这在具有不同通道组合的模型中是可行的,这些模型从多个位置场位置接收分散的突触输入。具有同特征的突触的分散定位是在感觉-知觉系统的神经元中实现尖锐特征选择性的有力候选者,其与突触位置相关具有多个自由度。定量证据表明,简并性(即不同结构成分产生相似功能结果的能力)可能作为一个广泛的框架,有效地实现输入特征编码和固有特性的动态平衡,而不会相互干扰。

摘要

跨越几个感觉-知觉系统的一个突出假说表明,树突棘的产生与介导对输入特征的尖锐调谐神经元反应的空间聚类突触有关。在这项基于电导的形态精确计算研究中,我们通过系统地分析不同的突触和通道定位分布对海马锥体神经元空间调谐尖锐度的影响来检验这一假说。我们发现,即使在具有不同通道组合的模型中,同特征的突触随机分散在树突分支上,树突棘的产生、体细胞电压反应中兴奋性斜坡的出现、几个固有树突体功能图谱的表达以及位置细胞反应的尖锐调谐都可以实现。引人注目的是,依赖于树突钠通道和 N-甲基-D-天冬氨酸受体的树突棘的产生和传播介导了通过分散的突触定位实现的空间调谐的尖锐度。为了确保我们的结果不是由于狭窄的参数选择的结果,我们使用独立的多参数随机搜索算法,为每个突触定位场景确认了数千个独特模型,从而验证了这些结论。接下来,通过虚拟敲除模型,我们证明了树突表达的电压门控离子通道,特别是瞬态钾通道,在维持位置细胞调谐的尖锐度方面起着至关重要的作用。重要的是,我们确定了靶向来自特定位置场的传入神经的突触增强足以赋予位置场选择性,即使固有不同的神经元从多个位置场位置接收随机分散的传入神经。我们的结果提供了定量证据,证明了通道和突触定位分布的不同组合可以同时产生类似的调谐和类似的固有特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2996/6117611/0af27f16c663/TJP-596-4173-g002.jpg

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