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Brain-Derived Neurotrophic Factor Enhances GABA Release Probability and Nonuniform Distribution of N- and P/Q-Type Channels on Release Sites of Hippocampal Inhibitory Synapses

机译:脑源性神经营养因子增强海马抑制性突触释放部位上GABA释放的可能性以及N和P / Q型通道的不均匀分布

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摘要

Long-lasting exposures to brain-derived neurotrophic factor (BDNF) accelerate the functional maturation of GABAergic transmission in embryonic hippocampal neurons, but the molecular bases of this phenomenon are still debated. Evidence in favor of a postsynaptic site of action has been accumulated, but most of the data support a presynaptic site effect. A crucial issue is whether the enhancement of evoked IPSCs (eIPSCs) induced by BDNF is attributable to an increase in any of the elementary parameters controlling neurosecretion, namely the probability of release, the number of release sites, the readily releasable pool (RRP), and the quantal size. Here, using peak-scaled variance analysis of miniature IPSCs, multiple probability fluctuation analysis, and cumulative amplitude analysis of action potential-evoked postsynaptic currents, we show that BDNF increases release probability and vesicle replenishment with little or no effect on the quantal size, the number of release sites, the RRP, and the Ca2+ dependence of eIPSCs. BDNF treatment changes markedly the distribution of Ca2+ channels controlling neurotransmitter release. It enhances markedly the contribution of N- and P/Q-type channels, which summed to >100% (“supra-additivity”), and deletes the contribution of R-type channels. BDNF accelerates the switch of presynaptic Ca2+ channel distribution from “segregated” to “nonuniform” distribution. This maturation effect was accompanied by an uncovered increased control of N-type channels on paired-pulse depression, otherwise dominated by P/Q-type channels in untreated neurons. Nevertheless, BDNF preserved the fast recovery from depression associated with N-type channels. These novel presynaptic BDNF actions derive mostly from an enhanced overlapping and better colocalization of N- and P/Q-type channels to vesicle release sites.
机译:长期暴露于脑源性神经营养因子(BDNF)会加速胚胎海马神经元中GABA能传递的功能成熟,但这种现象的分子基础仍存在争议。已经积累了支持突触后作用部位的证据,但是大多数数据支持突触前作用部位的作用。一个关键问题是由BDNF引起的诱发性IPSC(eIPSC)的增强是否归因于控制神经分泌的任何基本参数的增加,即释放的可能性,释放部位的数量,易释放库(RRP),和数量的大小。在这里,使用微型IPSC的峰级方差分析,多次概率波动分析以及动作电位诱发的突触后电流的累积幅度分析,我们表明BDNF增加了释放概率和囊泡补给,而对量子大小的影响很小或没有影响。 eIPSCs的释放位点数目,RRP和Ca 2 + 依赖性。 BDNF治疗显着改变控制神经递质释放的Ca 2 + 通道的分布。它显着增强了N和P / Q型通道的贡献,这些通道的总和> 100%(“超加性”),并删除了R型通道的贡献。 BDNF加速了突触前Ca 2 + 通道分布从“分离”分布向“非均匀”分布的转换。这种成熟效应伴随着对成对脉冲压抑的N型通道的未发现的增强控制,否则,在未经处理的神经元中,P / Q型通道占主导地位。然而,BDNF保留了与N型通道相关的抑郁症的快速恢复。这些新颖的突触前BDNF动作主要来自N和P / Q型通道向囊泡释放位点的增强重叠和更好的共定位。

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