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阳离子-氯离子共转运体与 GABA 信号在小鼠海马区小清蛋白中间神经元中的极性

Cation-chloride cotransporters and the polarity of GABA signalling in mouse hippocampal parvalbumin interneurons.

机构信息

Inserm UMR-S 1270, 75005, Paris, France.

Sorbonne Université, F75005, Paris, France.

出版信息

J Physiol. 2020 May;598(10):1865-1880. doi: 10.1113/JP279221. Epub 2020 Feb 17.

Abstract

KEY POINTS

Cation-chloride cotransporters (CCCs) play a critical role in controlling the efficacy and polarity of GABA receptor (GABA R)-mediated transmission in the brain, yet their expression and function in GABAergic interneurons has been overlooked. We compared the polarity of GABA signalling and the function of CCCs in mouse hippocampal pyramidal neurons and parvalbumin-expressing interneurons. Under resting conditions, GABA R activation was mostly depolarizing and yet inhibitory in both cell types. KCC2 blockade further depolarized the reversal potential of GABA R-mediated currents often above action potential threshold. However, during repetitive GABA R activation, the postsynaptic response declined independently of the ion flux direction or KCC2 function, suggesting intracellular chloride build-up is not responsible for this form of plasticity. Our data demonstrate similar mechanisms of chloride regulation in mouse hippocampal pyramidal neurons and parvalbumin interneurons.

ABSTRACT

Transmembrane chloride gradients govern the efficacy and polarity of GABA signalling in neurons and are usually maintained by the activity of cation-chloride cotransporters, such as KCC2 and NKCC1. Whereas their role is well established in cortical principal neurons, it remains poorly documented in GABAergic interneurons. We used complementary electrophysiological approaches to compare the effects of GABA receptor (GABA R) activation in adult mouse hippocampal parvalbumin interneurons (PV-INs) and pyramidal cells (PCs). Loose cell-attached, tight-seal and gramicidin-perforated patch recordings all show GABA R-mediated transmission is slightly depolarizing and yet inhibitory in both PV-INs and PCs. Focal GABA uncaging in whole-cell recordings reveal that KCC2 and NKCC1 are functional in both PV-INs and PCs but differentially contribute to transmembrane chloride gradients in their soma and dendrites. Blocking KCC2 function depolarizes the reversal potential of GABA R-mediated currents in PV-INs and PCs, often beyond firing threshold, showing KCC2 is essential to maintain the inhibitory effect of GABA Rs. Finally, we show that repetitive 10 Hz activation of GABA Rs in both PV-INs and PCs leads to a progressive decline of the postsynaptic response independently of the ion flux direction or KCC2 function. This suggests intraneuronal chloride build-up may not predominantly contribute to activity-dependent plasticity of GABAergic synapses in this frequency range. Altogether our data demonstrate similar mechanisms of chloride regulation in mouse hippocampal PV-INs and PCs and suggest KCC2 downregulation in the pathology may affect the valence of GABA signalling in both cell types.

摘要

要点

阳离子-氯离子共转运体(CCCs)在控制大脑中 GABA 受体(GABA R)介导的传递的效力和极性方面起着关键作用,但它们在 GABA 能中间神经元中的表达和功能尚未被重视。我们比较了 GABA 信号的极性和 CCC 在小鼠海马锥体神经元和表达 Parvalbumin 的中间神经元中的功能。在静息状态下,GABA R 的激活在这两种细胞类型中主要是去极化的,但具有抑制作用。KCC2 阻断进一步使 GABA R 介导的电流的反转电位去极化,通常超过动作电位阈值。然而,在重复的 GABA R 激活期间,突触后反应独立于离子流方向或 KCC2 功能下降,表明细胞内氯离子积累不是这种形式可塑性的原因。我们的数据表明,在小鼠海马锥体神经元和 Parvalbumin 中间神经元中存在类似的氯离子调节机制。

摘要

跨膜氯离子梯度控制神经元中 GABA 信号的效力和极性,通常由阳离子-氯离子共转运体(如 KCC2 和 NKCC1)的活性维持。虽然它们在皮质主要神经元中的作用已得到很好的证实,但在 GABA 能中间神经元中的作用仍记录甚少。我们使用互补的电生理方法比较了成年小鼠海马 Parvalbumin 中间神经元(PV-INs)和锥体细胞(PCs)中 GABA 受体(GABA R)激活的影响。宽松的细胞附着、紧密密封和革兰氏菌素穿孔贴片记录都表明,GABA R 介导的传递在 PV-INs 和 PCs 中均略有去极化,但具有抑制作用。全细胞记录中的焦点 GABA 去笼揭示 KCC2 和 NKCC1 在 PV-INs 和 PCs 中均具有功能,但对其胞体和树突中的跨膜氯离子梯度有不同的贡献。阻断 KCC2 功能使 PV-INs 和 PCs 中 GABA R 介导的电流的反转电位去极化,经常超过放电阈值,表明 KCC2 对于维持 GABA R 的抑制作用是必不可少的。最后,我们表明,在 PV-INs 和 PCs 中,10 Hz 的 GABA R 重复激活导致突触后反应逐渐下降,与离子流方向或 KCC2 功能无关。这表明,在该频率范围内,细胞内氯离子积累可能不会主要导致 GABA 能突触的活动依赖性可塑性。总之,我们的数据表明,在小鼠海马 PV-INs 和 PCs 中存在类似的氯离子调节机制,并表明 KCC2 在病理学中的下调可能会影响这两种细胞类型中 GABA 信号的效价。

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