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从调节剂到介质:脑源性神经营养因子对离子通道的快速作用。

From modulator to mediator: rapid effects of BDNF on ion channels.

作者信息

Rose Christine R, Blum Robert, Kafitz Karl W, Kovalchuk Yury, Konnerth Arthur

机构信息

Institut für Physiologie, Ludwig-Maximilians-Universität München, Germany.

出版信息

Bioessays. 2004 Nov;26(11):1185-94. doi: 10.1002/bies.20118.

DOI:10.1002/bies.20118
PMID:15499580
Abstract

Neurotrophins (NTs) are [?AUTHOR] a family of structurally related, secreted proteins that regulate the survival, differentiation and maintenance of function of different populations of peripheral and central neurons.1,2 Among these, BDNF (brain-derived neurotrophic factor) has drawn considerable interest because both its synthesis and secretion are increased by physiological levels of activity, indicating a unique role of this neurotrophin in coupling neuronal activity to structural and functional properties of neuronal circuits. In addition to its classical neurotrophic effects, which are evident within hours or days and which usually result from changes in cellular gene expression, BDNF exerts acute effects on synaptic transmission and is involved in the induction of long-term potentiation. Many of these rapid effects of BDNF are mediated by its modulation of ion channel properties following TrkB-mediated activation of intracellular second messenger cascades and protein phosphorylation. However, recent reports have shown that BDNF not only acts as a modulator of ion channels, but can also directly and rapidly gate a Na(+) channel, thereby assigning BDNF the properties of a classical excitatory transmitter. Thus, BDNF, in addition its role as a potent neuromodulator, emerges as an excitatory transmitter-like substance which acutely controls resting membrane potential, neuronal excitability, synaptic transmission and participates in the induction of synaptic plasticity.

摘要

神经营养因子(NTs)是一类结构相关的分泌蛋白,可调节外周和中枢不同神经元群体的存活、分化及功能维持。1,2 其中,脑源性神经营养因子(BDNF)引发了广泛关注,因为其合成和分泌会因生理水平的活动而增加,这表明该神经营养因子在将神经元活动与神经回路的结构和功能特性相耦合方面具有独特作用。除了在数小时或数天内显现的经典神经营养作用(通常由细胞基因表达变化引起)外,BDNF 还对突触传递产生急性影响,并参与长时程增强的诱导。BDNF 的许多这些快速作用是通过 TrkB 介导的细胞内第二信使级联反应激活和蛋白质磷酸化后对离子通道特性的调节来介导的。然而,最近的报告表明,BDNF 不仅作为离子通道的调节剂起作用,还可以直接快速地控制钠通道,从而赋予 BDNF 经典兴奋性递质的特性。因此,BDNF 除了作为一种强效神经调节剂的作用外,还作为一种类似兴奋性递质的物质出现,它可急性控制静息膜电位、神经元兴奋性、突触传递并参与突触可塑性的诱导。

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