首页> 美国卫生研究院文献>The Journal of Physiology >Potassium currents operated by thyrotrophin-releasing hormone in dissociated CA1 pyramidal neurones of rat hippocampus.
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Potassium currents operated by thyrotrophin-releasing hormone in dissociated CA1 pyramidal neurones of rat hippocampus.

机译:促甲状腺激素释放激素在大鼠海马CA1锥体神经元的解离中作用钾电流。

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摘要

1. Membrane currents activated by thyrotrophin-releasing hormone (TRH) were investigated in the dissociated rat hippocampal CA1 pyramidal neurone using the nystatin perforated patch recording configuration. 2. Under current-clamp condition, TRH caused a transient hyperpolarization accompanied by a decrease of firing activity and a successive long-lasting depolarization. The latter induced a blockade of firing. 3. When neurones were held at a holding potential (VH) of -40 mV under voltage clamp, TRH elicited a transient outward current with an increase in the membrane conductance, which was followed by a sustained inward current with a decrease in membrane conductance. The inactive TRH metabolite, TRH free acid, did not induce any currents. 4. The reversal potential of TRH-induced outward current (ETRH) was close to the K+ equilibrium potential (EK). The change in ETRH for a 10-fold change in extracellular K+ concentration was 56.4 mV, indicating that the membrane behaves like a K+ electrode in the presence of TRH. On the other hand, the TRH-induced inward current was due to suppression of a slow inward current relaxation during hyperpolarizing voltage commands to -50 mV from a VH of -40 mV, indicating the suppression of the voltage- and time-dependent component of the K+ current (M-current). 5. The TRH-induced outward current (ITRH) increased in a concentration-dependent manner over the concentration range 10(-8)-10(-6) M. The half-maximum concentration was 7.4 x 10(-8) M and the Hill coefficient was 1.5. 6. The TRH-induced outward current (ITRH) was antagonized by K+ channel blockers such as tetraethylammonium (TEA), 4-aminopyridine (4-AP) and Ba2+ in a concentration-dependent manner. ITRH was insensitive to both apamin and iberiotoxin. 7. The first application of TRH to neurones perfused with Ca(2+)-free external solution containing 2 mM EGTA could induce ITRH but the TRH response diminished dramatically with successive applications. Intracellular perfusion with a Ca2+ chelator, 1,2-bis(O-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid (BAPTA), also diminished the TRH response. 8. The depletion of Ca2+ from the intracellular Ca2+ store by thapsigargin blocked the TRH response without affecting the caffeine response. Pretreatment with Li+ significantly enhanced ITRH, suggesting that ITRH is involved in the elevation of intracellular free Ca2+ released from the inositol 1,4,5-trisphosphate (IP3)-sensitive Ca2+ store site but not from the caffeine-sensitive one. 9. Staurosporine, a protein kinase C (PKC) inhibitor, suppressed ITRH in a concentration-dependent manner (the half-maximum inhibitory concentration (IC50), was 2.45 x 10(-8) M).(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用制霉菌素穿孔的贴片记录结构,在离体大鼠海马CA1锥体神经元中研究了促甲状腺激素释放激素(TRH)激活的膜电流。 2.在电流钳制条件下,TRH引起瞬态超极化,并伴有放电活性降低和连续的持久去极化。后者引发了射击的封锁。 3.当神经元在电压钳制下保持在-40 mV的保持电势(VH)时,TRH引起瞬态向外电流,膜电导增加,接着是持续的内向电流,膜电导降低。灭活的TRH代谢产物TRH游离酸不产生任何电流。 4. TRH诱导的外向电流(ETRH)的反向电位接近K +平衡电位(EK)。细胞外K +浓度发生10倍变化时,ETRH的变化为56.4 mV,表明在TRH存在下,膜的行为就像K +电极一样。另一方面,TRH感应的内向电流是由于在将超极化电压命令从-40 mV的VH降低至-50 mV期间抑制了缓慢的内向电流松弛,这表明抑制了电压和时间相关分量。 K +电流(M电流)。 5. TRH诱导的向外电流(ITRH)在浓度范围10(-8)-10(-6)M上以浓度依赖的方式增加。半最大浓度为7.4 x 10(-8)M和希尔系数为1.5。 6. TRH诱导的外向电流(ITRH)被K +通道阻滞剂(如四乙铵(TEA),4-氨基吡啶(4-AP)和Ba2 +)以浓度依赖的方式拮抗。 ITRH对罂粟碱和埃博毒素均不敏感。 7.将TRH首次应用到含有2 mM EGTA的不含Ca(2+)的外部溶液灌流的神经元中可以诱导ITRH,但连续应用后TRH反应显着降低。用Ca2 +螯合剂1,2-双(O-氨基苯氧基)乙烷-N,N,N',N'-四乙酸(BAPTA)进行的细胞内灌注也减少了TRH反应。 8.毒胡萝卜素从细胞内Ca2 +储存中清除Ca2 +可以阻断TRH反应,而不会影响咖啡因反应。 Li +预处理显着增强了ITRH,表明ITRH参与了肌醇1,4,5-三磷酸(IP3)敏感的Ca2 +存储位点释放的细胞内游离Ca2 +的升高,但咖啡因敏感的位点则没有。 9. Staurosporine,一种蛋白激酶C(PKC)抑制剂,以浓度依赖性方式抑制ITRH(半数最大抑制浓度(IC50)为2.45 x 10(-8)M)。(摘要截短为400字)

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