首页> 美国卫生研究院文献>The Journal of Physiology >Whole-cell current noise produced by excitatory and inhibitory amino acids in large cerebellar neurones of the rat.
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Whole-cell current noise produced by excitatory and inhibitory amino acids in large cerebellar neurones of the rat.

机译:大鼠大小脑神经元中兴奋性和抑制性氨基酸产生的全细胞电流噪声。

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摘要

1. Membrane noise and current changes produced by glutamate and related excitatory amino acids have been examined in cultured large cerebellar neurones (including Purkinje cells), with whole-cell patch-clamp methods. The sensitivity of these neurones to the inhibitory amino acids gamma-aminobutyric acid (GABA) and glycine has also been studied. 2. The neurones formed inhibitory synapses in culture, and displayed spontaneous synaptic currents. Reducing the pipette Cl- concentration (i.e. intracellular synaptic currents. Reducing the pipette Cl- concentration (i.e. intracellular concentration) caused a negative shift in their reversal potential, and the currents could be blocked with bicuculline (10 microM), suggesting that they were mediated by GABAA receptors. Spontaneous synaptic activity was also considerably reduced in the presence of 3 microM-tetrodotoxin. 3. Analysis of the increase in whole-cell current noise produced by the application of GABA (3 microM) gave noise spectra that were fitted by two Lorentzian components with slow and fast time constants of 23.6 and 1.9 ms at a membrane potential (Vm) of -110 mV. The mean single-channel conductance estimated from GABA noise was gamma noise = 12 pS. Glycine (10 microM) whole-cell current responses were Cl(-)-mediated and reversibly abolished by 1 microM-strychnine. 4. Bath application of excitatory amino acids gave whole-cell current changes accompanied by an increase in synaptic activity. Postsynaptic responses to the excitatory amino acids were more readily seen after the inhibitory synaptic currents had been abolished by bicuculline. Membrane current changes were obtained in response to the putative transmitters glutamate and aspartate, and the agonists NMDA (N-methyl-D-aspartate), ibotenate, quisqualate and kainate. Their reversal potential was approximately -5 mV. 5. A majority of noise spectra produced by the various glutamate receptor agonists were fitted by two Lorentzian components; the rest were fitted with a single Lorentzian component. The noise time constants were apparently not dependent on the type of glutamate agonist used to activate the receptor channels. Pooling data for all agonists gave a mean time constant for single-component spectra of tau noise = 4.8 +/- 0.3 ms; for two-component spectra the time constants were tau 1 = 22.7 +/- 1.8 ms and tau 2 = 2.2 +/- 0.12 ms (Vm = -110 to -50 mV). It is likely that the two components present in whole-cell noise spectra reflect complex kinetics of glutamate receptor channels. 6. The mean single-channel conductance was estimated from whole-cell noise for the various excitatory amino acids.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.用全细胞膜片钳方法在培养的小脑神经元(包括浦肯野细胞)中检查了谷氨酸和相关兴奋性氨基酸产生的膜噪声和电流变化。还研究了这些神经元对抑制性氨基酸γ-氨基丁酸(GABA)和甘氨酸的敏感性。 2.神经元在培养物中形成抑制性突触,并显示出自发的突触电流。降低移液器Cl-浓度(即细胞内突触电流。降低移液器Cl-浓度(即细胞内浓度)会导致其反转电位发生负向移动,并且电流可能会被双小分子(10 microM)阻断,表明它们已被介导在存在3 microM-河豚毒素的情况下,自发的突触活性也大大降低; 3.分析了应用GABA(3 microM)产生的全细胞电流噪声的增加,得出了两个在膜电位(Vm)为-110 mV时具有23.6和1.9 ms的慢和快时间常数的洛伦兹分量。根据GABA噪声估计的平均单通道电导为γ噪声= 12 pS。甘氨酸(10 microM)全细胞当前的反应是由Cl(-)介导的,可逆性地被1 microM-strychnine取消了。4.浴液中加入兴奋性氨基酸会引起全细胞电流的变化,同时增加突触活动。在双小分子消除抑制性突触电流后,更容易看到对兴奋性氨基酸的突触后反应。响应于假定的递质谷氨酸和天冬氨酸,以及激动剂NMDA(N-甲基-D-天冬氨酸),ibotenate,quisqualate和kainate,获得了膜电流变化。它们的反转电位约为-5 mV。 5.由各种谷氨酸受体激动剂产生的大部分噪声谱由两个洛伦兹分量拟合;其余的都装有一个洛伦兹分量。噪声时间常数显然不取决于用于激活受体通道的谷氨酸激动剂的类型。所有激动剂的合并数据给出了tau噪声单组分光谱的平均时间常数= 4.8 +/- 0.3 ms;对于两组分光谱,时间常数为tau 1 = 22.7 +/- 1.8 ms和tau 2 = 2.2 +/- 0.12 ms(Vm = -110至-50 mV)。全细胞噪声频谱中存在的两个成分可能反映了谷氨酸受体通道的复杂动力学。 6.根据各种兴奋性氨基酸的全细胞噪声估算平均单通道电导。(摘要截短为400字)

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