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首页> 外文期刊>Journal of Neurophysiology >Postsynaptic action of BDNF on GABAergic synaptic transmission in the superficial layers of the mouse superior colliculus.
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Postsynaptic action of BDNF on GABAergic synaptic transmission in the superficial layers of the mouse superior colliculus.

机译:BDNF对小鼠上丘表层GABA能突触传递的突触后作用。

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摘要

The neurotrophin brain-derived neurotrophic factor (BDNF) is involved in numerous aspects of synapse development and plasticity. The present study was aimed at clarifying the significance of endogenous BDNF for the synaptically driven spontaneous network activity and GABAergic inhibition in the superficial layers of the mouse superior colliculus. In this structure neuron survival is unaffected by the absence of BDNF. Two experimental approaches were used: comparison of BDNF-deficient (-/-) and wild-type (+/+) mice and blockade of BDNF receptor signaling by the tyrosine kinase inhibitor K-252a. Patch-clamp recordings were performed on horizontal slices during postnatal days 15 and 16. The lack of BDNF in -/- mice caused a significant reduction of the spontaneous action potential frequency and an increase in the pharmacologically induced disinhibition of spike discharge. This change was accompanied by an increase in the amplitudes of GABAergic evoked, spontaneous, and miniature inhibitory postsynaptic currents (IPSCs). BDNF gene inactivation had no effect on the degree of paired-pulse facilitation or the frequency of miniature IPSCs. The increase of IPSC amplitudes by chronic BDNF deprivation was completely mimicked by acute exposure to K-252a in +/+ animals. The enhancement of GABAergic IPSCs in -/- animals was reversed by acute application of 100 ng/ml BDNF, but this rescue was completely prevented by blocking postsynaptic protein kinase C (PKC) activation with the PKC inhibitor peptide 19-31. From these results we conclude that BDNF increases spontaneous network activity by suppressing GABAergic inhibition, the site of action of BDNF is predominantly postsynaptic, BDNF-induced suppression of GABAergic synaptic transmission is caused by acute downregulation of GABA(A) receptors, and BDNF effects are mediated by its TrkB receptor and require PKC activation in the postsynaptic cell.
机译:神经营养素脑源性神经营养因子(BDNF)参与突触发展和可塑性的许多方面。本研究旨在阐明内源性BDNF对于小鼠上丘表层的突触驱动的自发网络活动和GABA能抑制的重要性。在这种结构中,神经元的生存不受BDNF的影响。使用了两种实验方法:比较BDNF缺陷(-/-)和野生型(+ / +)小鼠,并通过酪氨酸激酶抑制剂K-252a阻断BDNF受体信号传导。产后第15和16天在水平切片上进行膜片钳记录。-/-小鼠缺乏BDNF导致自发动作电位频率显着降低,并且药理学上诱导了膜片放电的抑制作用增加。这种变化伴随着GABA能诱发,自发和微型抑制性突触后电流(IPSC)幅度的增加。 BDNF基因失活对成对脉冲的促进程度或微型IPSC的频率没有影响。急性BDNF剥夺引起的IPSC振幅增加完全被+ / +动物急性接触K-252a所模仿。急性应用100 ng / ml BDNF可逆转-/-动物中GABA能IPSCs的增强,但通过用PKC抑制剂肽19-31阻断突触后蛋白激酶C(PKC)活化,可以完全阻止这种拯救。从这些结果可以得出结论,BDNF通过抑制GABA能抑制来增加自发网络活动,BDNF的作用部位主要是突触后,BDNF诱导的GABA能突触传递的抑制是由GABA(A)受体的急性下调引起的,并且BDNF的作用由其TrkB受体介导,需要突触后细胞中的PKC激活。

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