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海马CA1腔隙-分子层中间神经元:突触前GABAB受体对单突触GABA能抑制性突触后电流的调制

Hippocampal CA1 lacunosum-moleculare interneurons: modulation of monosynaptic GABAergic IPSCs by presynaptic GABAB receptors.

作者信息

Khazipov R, Congar P, Ben-Ari Y

机构信息

Institut National de la Santé et de la Recherche Médicale Unité 29, Paris, France.

出版信息

J Neurophysiol. 1995 Nov;74(5):2126-37. doi: 10.1152/jn.1995.74.5.2126.

Abstract
  1. Whole cell patch-clamp recordings were employed to characterize monosynaptic inhibitory postsynaptic currents (IPSCs) in morphologically and electrophysiologically identified interneurons located in the stratum lacunosum moleculare, or near the border of the stratum radiatum (LM interneurons), in the CA1 region of hippocampal slices taken from 3- to 4-wk-old rats. Monosynaptic IPSCs, evoked in the presence of glutamate receptor antagonists 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX; 20 microM) and D-2-amino-5-phosphopentanoate (APV; 50 microM) were biphasic. The gamma-aminobutyric acid-A (GABAA) receptor antagonist, bicuculline (20 microM), blocked the fast IPSC, and the slow IPSC was blocked by the GABAB receptor antagonist CGP35348 (500 microM). 2. Monosynaptic IPSCs were evoked by electrical stimulation in several distant regions including the stratum radiatum, the stratum oriens, the stratum lacunosum-moleculare, and the molecular layer of dentate gyrus, suggesting an extensive network of inhibitory interneurons in the hippocampus. In paired recordings of CA1 interneurons and pyramidal cells, IPSCs were evoked by electrical stimulation of most of these distal regions with the exception of the molecular layer of dentate gyrus, which evoked an IPSC only in LM interneurons. 3. Frequent (> 0.1 Hz) stimulation depressed the evoked IPSCs. With a paired-pulse protocol, the second IPSC was depressed and the maximal depression (40-50%) was observed with an interstimulus interval of 100-200 ms. 4. The GABAB receptor agonist baclofen (1 microM) reduced the amplitude of evoked IPSCs and the paired-pulse depression of the second IPSC. The GABAB receptor antagonist CGP35348 (0.5-1 mM) had no significant effect on the amplitude of isolated IPSCs. However, CGP35348 reduced but did not fully block paired-pulse depression, suggesting that this depression is partly due to the activation of presynaptic GABAB receptors. 5. The paired-pulse depression depended on the level of transmitter release. Potentiation of synaptic release of GABA, by increasing the extracellular Ca2+ concentration to 4 mM and reducing the extracellular Mg2+ concentration to 0.1 mM, enhanced the depression. Reduction of transmitter release by increasing extracellular Mg2+ concentration to 7 mM diminished the paired-pulse depression of IPSCs. After potentiation of transmitter release, CGP35348 was less efficient in reducing the paired-pulse depression, suggesting that enhancement of depression by high-calcium/low-magnesium medium was preferentially due to the potentiation of a GABAB-independent component. 6. In summary, monosynaptic IPSCs recorded in LM interneurons show similar features to those recorded in pyramidal cells. The strong correlation between the level of transmitter release and the degree of paired-pulse depression may have important physiological consequences, because in synapses with a high level of activity and a high level of GABA release, inhibition is powerful, but depression can develop more readily.
摘要
  1. 采用全细胞膜片钳记录技术,对取自3至4周龄大鼠海马切片CA1区、位于分子层或辐射层边界附近(LM中间神经元)的形态学和电生理学鉴定的中间神经元中的单突触抑制性突触后电流(IPSC)进行表征。在存在谷氨酸受体拮抗剂6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX;20 μM)和D-2-氨基-5-磷酸戊酸(APV;50 μM)的情况下诱发的单突触IPSC是双相的。γ-氨基丁酸-A(GABAA)受体拮抗剂荷包牡丹碱(20 μM)阻断快速IPSC,而慢IPSC被GABAB受体拮抗剂CGP35348(500 μM)阻断。2. 通过电刺激在包括辐射层、原层、分子层和齿状回分子层在内的几个远处区域诱发单突触IPSC,这表明海马中存在广泛的抑制性中间神经元网络。在CA1中间神经元和锥体细胞的配对记录中,除齿状回分子层外,这些远端区域中的大多数通过电刺激均可诱发IPSC,齿状回分子层仅在LM中间神经元中诱发IPSC。3. 频繁(>0.1 Hz)刺激会抑制诱发的IPSC。采用双脉冲方案时,第二个IPSC被抑制,在100至200 ms的刺激间隔下观察到最大抑制(40 - 50%)。4. GABAB受体激动剂巴氯芬(1 μM)降低了诱发IPSC的幅度以及第二个IPSC的双脉冲抑制。GABAB受体拮抗剂CGP35348(0.5 - 1 mM)对分离的IPSC幅度无显著影响。然而,CGP35348降低但未完全阻断双脉冲抑制,这表明这种抑制部分归因于突触前GABAB受体的激活。5. 双脉冲抑制取决于递质释放水平。通过将细胞外Ca2+浓度提高到4 mM并将细胞外Mg2+浓度降低到0.1 mM来增强GABA的突触释放,增强了抑制作用。通过将细胞外Mg2+浓度提高到7 mM来减少递质释放,减弱了IPSC的双脉冲抑制。在递质释放增强后,CGP35348在降低双脉冲抑制方面效率较低,这表明高钙/低镁培养基增强抑制作用主要是由于增强了不依赖GABAB的成分。6. 总之,在LM中间神经元中记录到的单突触IPSC与在锥体细胞中记录到的具有相似特征。递质释放水平与双脉冲抑制程度之间的强相关性可能具有重要的生理意义,因为在具有高活动水平和高GABA释放水平的突触中,抑制作用很强,但抑制作用可能更容易发展。

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