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首页> 外文期刊>Journal of Neurophysiology >Pharmacological characterization of glycine-gated chloride currents recorded in rat hippocampal slices.
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Pharmacological characterization of glycine-gated chloride currents recorded in rat hippocampal slices.

机译:在大鼠海马切片中记录的甘氨酸门控氯化物电流的药理特性。

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摘要

An inhibitory role for strychnine-sensitive glycine-gated chloride channels (GlyRs) in mature hippocampus has been overlooked, largely due to the misconception that GlyR expression ceases early during development and to few functional studies demonstrating their presence. As a result, little is known regarding the physiological and pharmacological properties of native GlyRs expressed by hippocampal neurons. In this study, we used pharmacological tools and whole cell patch-clamp recordings of CA1 pyramidal cells and interneurons in acutely prepared hippocampal slices from 3- to 4-wk old rats to characterize these understudied receptors. We show that glycine application to recorded pyramidal cells and interneurons elicited strychnine-sensitive chloride-mediated currents (I(gly)) that did not completely desensitize in the continued presence of agonist but reached a steady state at 45-60% of the peak amplitude. Additionally, the inhibitory amino acid, taurine, which has been shown to activate GlyRs in other systems, activated GlyRs expressed by both pyramidal cells and interneurons, although with much less potency than glycine, having an EC(50) 10-fold higher. To examine the potential subunit composition of hippocampal GlyRs, we tested the effect of the GABA(A) receptor antagonist, picrotoxin, on I(gly) recorded from both cell types. At low micromolar concentrations of picrotoxin (< or =100 microM), which selectively block alpha homomeric GlyRs, I(gly) was partially attenuated in both cell types, indicating that alpha homomeric receptors are expressed by pyramidal cells and interneurons. At picrotoxin concentrations < or =1 mM, approximately 10-20% of the whole cell current remained, suggesting that alphabeta heteromeric GlyRs are also expressed because this subtype of GlyR is relatively resistant to picrotoxin antagonism. Finally, we examined whether hippocampal GlyRs are modulated by zinc. Consistent with previous reports in other preparations, zinc elicited a bidirectional modulation of GlyRs, with physiological zinc concentrations (1-100 microM) increasing whole cell currents and concentrations >100 microM depressing them. Furthermore, the same concentration of zinc that potentiates I(gly) suppressed currents mediated by the N-methyl-D-aspartate subtype of the glutamate receptor. Thus we provide a pharmacological characterization of native GlyRs expressed by both major neuron types in hippocampus and show that these receptors can be activated by taurine, an amino acid that is highly concentrated in hippocampus. Furthermore, our data suggest that at least two GlyR subtypes are present in hippocampus and that GlyR-mediated currents can be potentiated by zinc at concentrations that suppress glutamate-mediated excitability.
机译:在成熟的海马中,对士的宁敏感的甘氨酸门控氯离子通道(GlyRs)的抑制作用已被忽略,这主要是由于人们误解了GlyR在发育早期就停止表达,并且很少有功能研究证明其存在。结果,关于海马神经元表达的天然GlyRs的生理和药理特性知之甚少。在这项研究中,我们使用药理学工具以及在3周至4周龄大鼠急性准备的海马切片中CA1锥体细胞和中间神经元的全细胞膜片钳记录,以表征这些未被充分研究的受体。我们表明,甘氨酸应用于记录的锥体细胞和中间神经元会引起对苯丙氨酸敏感的氯化物介导的电流(I(gly)),在持续存在激动剂的情况下不会完全脱敏,但在峰值幅度的45-60%时达到稳态。此外,抑制性氨基酸牛磺酸已被证明可以激活其他系统中的GlyRs,尽管锥体细胞比甘氨酸的效力要低得多,但其锥体细胞和中间神经元表达的GlyRs的EC(50)却高10倍。为了检查海马GlyRs的潜在亚基组成,我们测试了两种细胞类型记录的GABA(A)受体拮抗剂微毒素对I(gly)的影响。在低微摩尔浓度的拟毒素(<或= 100 microM)下(选择性阻断α同聚GlyRs),I(gly)在两种细胞类型中均部分减弱,表明α同聚受体由锥体细胞和中间神经元表达。在微毒素浓度<或= 1 mM时,仍约占整个细胞电流的10-20%,这表明还表达了字母异体GlyR,因为这种GlyR亚型相对抗微毒素拮抗作用。最后,我们检查了海马GlyRs是否受锌调节。与其他制备方法中的先前报道一致,锌引起了GlyRs的双向调节,其中生理性锌浓度(1-100 microM)增加了整个细胞的电流,而浓度大于100 microM的锌则抑制了它们。此外,增强I(gly)的相同浓度的锌抑制了由谷氨酸受体的N-甲基-D-天冬氨酸亚型介导的电流。因此,我们提供了由海马中两种主要神经元类型表达的天然GlyRs的药理学表征,并表明这些受体可以被牛磺酸(牛磺酸,一种高度浓缩在海马中的氨基酸)激活。此外,我们的数据表明,海马中至少存在两种​​GlyR亚型,锌可以抑制谷氨酸介导的兴奋性,从而增强GlyR介导的电流。

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