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克隆大鼠垂体细胞中的内向整流钾电流及其受促甲状腺激素释放激素的调节。

An inward-rectifying K+ current in clonal rat pituitary cells and its modulation by thyrotrophin-releasing hormone.

作者信息

Bauer C K, Meyerhof W, Schwarz J R

机构信息

Physiologisches Institut, Universitätskrankenhaus Eppendorf, Hamburg, FRG.

出版信息

J Physiol. 1990 Oct;429:169-89. doi: 10.1113/jphysiol.1990.sp018250.

Abstract
  1. Voltage-dependent K+ currents were recorded in cultured tumour-derived anterior pituitary cells of the rat (GH3 cells) with the patch clamp technique. An inward-rectifying current is described which is found to be carried by K+. 2. In isotonic KCl, whole-cell inward K+ currents were elicited by hyperpolarizing pulses from a holding potential of -40 mV. These inward K+ currents showed time- and voltage-dependent inactivation at potentials more negative than -60 mV. Inactivation was faster and more complete at larger hyperpolarizations. Recovery from inactivation was also time- and voltage-dependent. It was faster and more complete with more positive potentials. Time course of inactivation and of recovery from inactivation could be fitted by single exponentials. 3. Two results showed that a steady inward K+ current is present at -40 mV. The holding current at -40 mV was reduced following complete inactivation of the inward K+ current during strong hyperpolarizing pulses, and the amplitude of maximum inward K+ current elicited by hyperpolarization increased after depolarizing pre-pulses of 5 s. The resting conductance was estimated to be 20-30% of the maximum inward-rectifying conductance. 4. The inward K+ current was drastically reduced by Cs+ and Ba2+, but not by Ni2+ and Co2+. Quinidine, 4-aminopyridine and tetraethylammonium chloride blocked the current. In contrast, dendrotoxin was without effect. 5. Thyrotrophin-releasing hormone (TRH) which induces biphasic secretion of prolactin in GH3 cells consistently reduced the inward K+ current in the presence of internal Ca2+. This reduction was abolished if the pipette solution contained guanosine 5'-O-(2-thiodiphosphate) (GDP beta S; 400 microM), confirming the involvement of G-proteins in the signal transduction pathway. 6. TRH shifted the voltage-dependence of inward K+ current inactivation to less negative potentials resulting in pronounced K+ current inactivation in the range of the resting potential of these cells (-40 to -60 mV). 7. In intact cells, closing of K+ channels would result in a depolarization. The existence of an inward-rectifying K+ current in GH3 cells which is able to be reduced by TRH could readily explain the TRH-induced increase in action potential firing underlying the sustained second phase of secretion.
摘要
  1. 采用膜片钳技术在培养的大鼠肿瘤源性垂体前叶细胞(GH3细胞)中记录电压依赖性钾电流。描述了一种内向整流电流,发现其由钾离子携带。2. 在等渗氯化钾溶液中,从-40 mV的钳制电位开始,通过超极化脉冲诱发全细胞内向钾电流。这些内向钾电流在比-60 mV更负的电位下表现出时间和电压依赖性失活。在更大的超极化情况下,失活更快且更完全。从失活状态恢复也具有时间和电压依赖性。在更正的电位下恢复更快且更完全。失活和从失活恢复的时间进程可用单指数函数拟合。3. 两个结果表明在-40 mV存在稳定的内向钾电流。在强超极化脉冲期间内向钾电流完全失活后,-40 mV的钳制电流减小,并且在5 s的去极化预脉冲后,超极化诱发的最大内向钾电流幅度增加。静息电导估计为最大内向整流电导的20 - 30%。4. 内向钾电流被铯离子和钡离子显著降低,但不被镍离子和钴离子降低。奎尼丁、4 - 氨基吡啶和氯化四乙铵阻断该电流。相反,树突毒素无作用。5. 促甲状腺激素释放激素(TRH)在GH3细胞中诱导催乳素的双相分泌,在细胞内钙离子存在的情况下持续降低内向钾电流。如果移液管溶液含有鸟苷5'-O-(2-硫代二磷酸)(GDPβS;400 μM),这种降低就会被消除,证实G蛋白参与了信号转导途径。6. TRH将内向钾电流失活的电压依赖性向较不负的电位移动,导致在这些细胞的静息电位范围(-40至-60 mV)内出现明显的钾电流失活。7. 在完整细胞中,钾通道关闭会导致去极化。GH3细胞中存在能够被TRH降低的内向整流钾电流,这很容易解释TRH诱导的动作电位发放增加,而动作电位发放增加是分泌持续第二阶段的基础。

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