首页> 外文期刊>The Journal of Physiology >Early expression of KCC2 in rat hippocampal cultures augments expression of functional GABA synapses.
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Early expression of KCC2 in rat hippocampal cultures augments expression of functional GABA synapses.

机译:KCC2在大鼠海马培养物中的早期表达增强了功能性GABA突触的表达。

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摘要

The development of GABAergic synapses is associated with an excitatory to inhibitory shift of the actions of GABA because of a reduction of [Cl-]i. This is due to a delayed postnatal expression of the K+ -Cl- cotransporter KCC2, which has low levels at birth and peaks during the first few postnatal weeks. Whether the expression of the cotransporter and the excitatory to inhibitory shift have other consequences on the operation of GABA(A) receptors and synapses is not yet known. We have now expressed KCC2 in immature neurones at an early developmental stage and determined the consequences on the formation of GABA and glutamate synapses. We report that early expression of the cotransporter selectively enhances GABAergic synapses: there is a significant increase of the density of GABA(A) receptors and synapses and an increase of the frequency of GABAergic miniature postsynaptic currents. The density of glutamate synapses and frequency of AMPA miniature postsynaptic currents are not affected. We conclude that the expression of KCC2 and the reduction of [Cl-]i play a critical role in the construction of GABAergic networks that extends beyond the excitatory to inhibitory shift of the actions of GABA.
机译:由于[Cl-] i的减少,GABA能突触的发展与GABA作用的兴奋性至抑制性转变有关。这是由于K + -Cl-共转运蛋白KCC2的产后表达延迟所致,其在出生时水平较低,并在产后前几周达到高峰。尚不清楚该共转运蛋白的表达和兴奋性抑制转移是否会对GABA(A)受体和突触的运作产生其他影响。现在,我们已经在发育的早期阶段在未成熟的神经元中表达了KCC2,并确定了对GABA和谷氨酸突触形成的影响。我们报告,cotransporter的早期表达选择性地增强了GABAergic突触:GABA(A)受体和突触的密度显着增加,并且GABAergic微型突触后电流的频率增加。谷氨酸突触的密度和AMPA微型突触后电流的频率不受影响。我们得出的结论是,KCC2的表达和[Cl-] i的减少在GABA能网络的构建中起着至关重要的作用,该网络超出了GABA作用的兴奋性到抑制性转移的范围。

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