Ohba Shizu, Ikeda Takamitsu, Ikegaya Yuji, Nishiyama Nobuyoshi, Matsuki Norio, Yamada Maki K
Laboratory of Chemical Pharmacology, Graduate School of Pharmaceutical Sciences, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo, Japan.
Cereb Cortex. 2005 Mar;15(3):291-8. doi: 10.1093/cercor/bhh130. Epub 2004 Jul 6.
Inhibitory neurotransmission is critical for neuronal circuit formation. To examine whether inhibitory neurotransmission receives target-selective modulation in the long term, we expressed the cDNA of brain-derived neurotrophic factor (BDNF), which has been shown to induce the augmentation of GABAergic synapses in vivo and in vitro, in a small population of cultured hippocampal neurons. At 48 h after transfection, the expression level of glutamic acid decarboxylase 65 (GAD65), a GABA synthetic enzyme that resides mainly in GABAergic terminals, was selectively enhanced around the BDNF-expressing neurons, in comparison with the neighboring control neurons interposed between the BDNF-expressing neurons and inhibitory neurons. Exogenous BDNF application for 48 h also increased the GAD level and enhanced the GABA release probability. These potentiating effects were attenuated in inhibitory synapses on neurons expressing a dominant negative form of the BDNF receptor (tTrkB). This suggests that postsynaptic BDNF-TrkB signaling contributes to the target-selective potentiation of inhibitory presynaptic machineries. Since BDNF is expressed in an activity-dependent manner in vivo, this selectivity may be one of the key mechanisms by which the independence of functional neuronal circuits is maintained.
抑制性神经传递对神经回路的形成至关重要。为了研究抑制性神经传递在长期内是否受到靶标选择性调节,我们在一小部分培养的海马神经元中表达了脑源性神经营养因子(BDNF)的cDNA,该因子已被证明在体内和体外均可诱导GABA能突触的增强。转染后48小时,与介于表达BDNF的神经元和抑制性神经元之间的相邻对照神经元相比,主要存在于GABA能终末的GABA合成酶谷氨酸脱羧酶65(GAD65)的表达水平在表达BDNF的神经元周围选择性增强。外源性BDNF作用48小时也增加了GAD水平并提高了GABA释放概率。这些增强作用在表达BDNF受体(tTrkB)显性负性形式的神经元的抑制性突触中减弱。这表明突触后BDNF-TrkB信号传导有助于抑制性突触前机制的靶标选择性增强。由于BDNF在体内以活动依赖的方式表达,这种选择性可能是维持功能性神经回路独立性的关键机制之一。