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大鼠垂体后叶神经末梢GABAA受体的特性

Properties of the GABAA receptor of rat posterior pituitary nerve terminals.

作者信息

Zhang S J, Jackson M B

机构信息

Department of Physiology, University of Wisconsin Medical School, Madison 53706, USA.

出版信息

J Neurophysiol. 1995 Mar;73(3):1135-44. doi: 10.1152/jn.1995.73.3.1135.

Abstract
  1. We investigated gamma-aminobutyric acid (GABA) receptors using thin slice patch-clamp techniques in the swellings along axons of posterior pituitary nerve terminals. 2. Activation of the nerve terminal GABAA receptor induced a mean conductance change of 1.5 nS. Normalizing to area gave a mean conductance density of 0.38 mS/cm2. 3. Whereas GABAA receptor-mediated responses could be seen in 91% of the nerve terminals tested, GABAB receptor-mediated responses could not be detected. The GABAB receptor agonist baclofen had no effect on holding current or on voltage-activated K+ and Ca2+ channels. It is unlikely that nerve terminals of the posterior pituitary contain GABAB receptors. 4. The channel gated by the nerve terminal GABAA receptor exhibited only a single open conductance level. Only fully open and fully closed states were observed. Subconductance states typical of other GABAA receptor channels were not seen in the GABA-gated channels of posterior pituitary nerve terminals. 5. Both open time and closed time distributions were biexponential, indicating at least two open and two closed conformations of the channel. At a higher GABA concentration, long-duration openings predominated, suggesting that long-duration openings were distinguished from short-duration openings by the occupation of a greater number of agonist binding sites. 6. Sustained application of GABA desensitized the receptor with simple exponential kinetics. The time constant for desensitization was approximately 9 s for both GABA and muscimol. 7. Zinc ions at concentrations of 100 microM reduced GABA responses by only 22%. This weak sensitivity to zinc, together with a previous observation of benzodiazepine sensitivity, suggested that the nerve terminal GABAA receptor possesses a gamma-subunit. 8. Responses mediated by the GABAA receptor persist in whole terminal recordings without Mg-ATP in the pipette solution. Thus, in contrast to many other GABAA receptors, this receptor showed no rundown in the absence of ATP. 9. The GABAA receptor channel of posterior pituitary nerve terminals has many properties in common with GABAA receptors of other preparations. A number of subtle differences between the nerve terminal receptor described here and cell body receptors described elsewhere may reflect the presence of receptor protein subunits unique to nerve terminals.
摘要
  1. 我们采用薄片膜片钳技术,在后叶垂体神经末梢轴突的膨体中研究了γ-氨基丁酸(GABA)受体。2. 神经末梢GABAA受体的激活诱导平均电导变化为1.5 nS。以面积归一化后得到平均电导密度为0.38 mS/cm²。3. 虽然在91%的测试神经末梢中可观察到GABAA受体介导的反应,但未检测到GABAB受体介导的反应。GABAB受体激动剂巴氯芬对钳制电流或电压激活的K⁺和Ca²⁺通道均无影响。后叶垂体的神经末梢不太可能含有GABAB受体。4. 由神经末梢GABAA受体门控的通道仅表现出单一的开放电导水平。仅观察到完全开放和完全关闭状态。在后叶垂体神经末梢的GABA门控通道中未见到其他GABAA受体通道典型的亚电导状态。5. 开放时间和关闭时间分布均为双指数分布,表明通道至少有两种开放和两种关闭构象。在较高的GABA浓度下,长时间开放占主导,这表明长时间开放与短时间开放的区别在于占据了更多的激动剂结合位点。6. 持续应用GABA会使受体以简单指数动力学脱敏。GABA和蝇蕈醇的脱敏时间常数约为9 s。7. 浓度为100 μM的锌离子仅使GABA反应降低22%。这种对锌的弱敏感性,以及先前观察到的对苯二氮䓬的敏感性,表明神经末梢GABAA受体具有γ亚基。8. 在移液管溶液中无Mg-ATP的全末梢记录中,GABAA受体介导的反应持续存在。因此,与许多其他GABAA受体不同,该受体在无ATP的情况下未出现衰减。9. 后叶垂体神经末梢的GABAA受体通道与其他制剂的GABAA受体有许多共同特性。此处描述的神经末梢受体与其他地方描述的细胞体受体之间的一些细微差异可能反映了神经末梢特有的受体蛋白亚基的存在。

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