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神经元中分隔式树突可塑性与输入特征存储

Compartmentalized dendritic plasticity and input feature storage in neurons.

作者信息

Losonczy Attila, Makara Judit K, Magee Jeffrey C

机构信息

Howard Hughes Medical Institute, Janelia Farm Research Campus, 19700 Helix Dr Ashburn, Virginia 20147, USA.

出版信息

Nature. 2008 Mar 27;452(7186):436-41. doi: 10.1038/nature06725.

Abstract

Although information storage in the central nervous system is thought to be primarily mediated by various forms of synaptic plasticity, other mechanisms, such as modifications in membrane excitability, are available. Local dendritic spikes are nonlinear voltage events that are initiated within dendritic branches by spatially clustered and temporally synchronous synaptic input. That local spikes selectively respond only to appropriately correlated input allows them to function as input feature detectors and potentially as powerful information storage mechanisms. However, it is currently unknown whether any effective form of local dendritic spike plasticity exists. Here we show that the coupling between local dendritic spikes and the soma of rat hippocampal CA1 pyramidal neurons can be modified in a branch-specific manner through an N-methyl-d-aspartate receptor (NMDAR)-dependent regulation of dendritic Kv4.2 potassium channels. These data suggest that compartmentalized changes in branch excitability could store multiple complex features of synaptic input, such as their spatio-temporal correlation. We propose that this 'branch strength potentiation' represents a previously unknown form of information storage that is distinct from that produced by changes in synaptic efficacy both at the mechanistic level and in the type of information stored.

摘要

尽管中枢神经系统中的信息存储被认为主要由各种形式的突触可塑性介导,但其他机制,如膜兴奋性的改变,也是存在的。局部树突棘电位是一种非线性电压事件,由空间上聚集且时间上同步的突触输入在树突分支内引发。局部电位仅选择性地对适当相关的输入做出反应,这使得它们能够作为输入特征检测器发挥作用,并有可能成为强大的信息存储机制。然而,目前尚不清楚是否存在任何有效的局部树突棘电位可塑性形式。在这里,我们表明,大鼠海马CA1锥体神经元的局部树突棘电位与胞体之间的耦合可以通过依赖于N-甲基-D-天冬氨酸受体(NMDAR)对树突Kv4.2钾通道的调节,以分支特异性的方式进行改变。这些数据表明,分支兴奋性的分区变化可以存储突触输入的多个复杂特征,比如它们的时空相关性。我们提出,这种“分支强度增强”代表了一种以前未知的信息存储形式,它在机制层面和存储的信息类型上都与突触效能变化所产生的形式不同。

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