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递质诱发的局部钙释放可稳定发育中的树突。

Transmitter-evoked local calcium release stabilizes developing dendrites.

作者信息

Lohmann Christian, Myhr Karen L, Wong Rachel O L

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, 660 S. Euclid, St Louis, Missouri 63110, USA.

出版信息

Nature. 2002 Jul 11;418(6894):177-81. doi: 10.1038/nature00850.

Abstract

In the central nervous system, dendritic arborizations of neurons undergo dynamic structural remodelling during development. Processes are elaborated, maintained or eliminated to attain the adult pattern of synaptic connections. Although neuronal activity influences this remodelling, it is not known how activity exerts its effects. Here we show that neurotransmission-evoked calcium (Ca(2+)) release from intracellular stores stabilizes dendrites during the period of synapse formation. Using a ballistic labelling method to load cells with Ca(2+) indicator dyes, we simultaneously monitored dendritic activity and structure in the intact retina. Two distinct patterns of spontaneous Ca(2+) increases occurred in developing retinal ganglion cells--global increases throughout the arborization, and local 'flashes' of activity restricted to small dendritic segments. Blockade of local, but not global, activity caused rapid retraction of dendrites. This retraction was prevented locally by focal uncaging of caged Ca(2+) that triggered Ca(2+) release from internal stores. Thus, local Ca(2+) release is a mechanism by which afferent activity can selectively and differentially regulate dendritic structure across the developing arborization.

摘要

在中枢神经系统中,神经元的树突分支在发育过程中经历动态的结构重塑。神经突会进行细化、维持或消除,以形成成年期的突触连接模式。虽然神经元活动会影响这种重塑,但目前尚不清楚活动是如何发挥其作用的。在此,我们表明,神经传递诱发的细胞内钙(Ca(2+))释放可在突触形成期间稳定树突。我们使用一种弹道标记方法将Ca(2+)指示染料加载到细胞中,同时监测完整视网膜中的树突活动和结构。在发育中的视网膜神经节细胞中出现了两种不同的自发Ca(2+)增加模式——整个分支区域的整体增加,以及局限于小树突段的局部“闪烁”活动。阻断局部而非整体活动会导致树突迅速回缩。通过局部释放笼锁Ca(2+)触发内部储存的Ca(2+)释放,可在局部防止这种回缩。因此,局部Ca(2+)释放是一种机制,通过该机制传入活动能够在整个发育中的分支区域选择性地、差异性地调节树突结构。

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