Effects of gamma-aminobutyric acid (GABA) on synaptogenesis and synaptic function.

B Belhage, G H Hansen, L Elster, A Schousboe
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Abstract

The correct establishment and function of synapses depend on a variety of factors, such as guidance of pre- and postsynaptic neurons as well as receptor development and localization. gamma-Aminobutyric acid (GABA) has a pronounced effect on these events and elicits differentiation of neurons; that is, GABA acts as a trophic signal. Accordingly, activating preexisting GABA receptors, a trophic GABA signal enhances the growth rate of neuronal processes, facilitates synapse formation, and promotes synthesis of specific proteins. Transcription and de novo synthesis are initiated by the GABA signal, but the intracellular link between GABA receptor activation and DNA transcription is largely unknown. GABA also controls the induction and development of functionally and pharmacologically different GABAA receptor subtypes. The induced receptors are likely to be inserted only into the synaptic membrane domain. However, this ability to target the induced GABAA receptors is probably coupled to the maturation of neurons and not to the action of GABA per se. The induced GABAA receptors apparently mediate a pronounced inhibition of neurotransmitter release, whereas other subtypes of GABAA receptors may be modulatory rather than inhibitory.

-氨基丁酸(GABA)对突触发生和突触功能的影响。
突触的正确建立和功能取决于多种因素,如突触前和突触后神经元的引导以及受体的发育和定位。γ -氨基丁酸(GABA)对这些事件有明显的影响,并引起神经元的分化;也就是说,GABA作为一种营养信号。因此,激活预先存在的GABA受体,营养GABA信号提高神经元过程的生长速度,促进突触的形成,并促进特定蛋白质的合成。转录和从头合成是由GABA信号启动的,但GABA受体激活和DNA转录之间的细胞内联系在很大程度上是未知的。GABA还控制着功能和药理上不同GABAA受体亚型的诱导和发育。诱导受体很可能只插入突触膜区域。然而,这种靶向诱导的GABAA受体的能力可能与神经元的成熟有关,而不是与GABA本身的作用有关。诱导的GABAA受体明显介导神经递质释放的明显抑制,而其他亚型的GABAA受体可能是调节性的而不是抑制性的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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