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生长激素分泌瘤(GH3)垂体细胞中GTP结合蛋白信号转导系统诱导的瞬时低阈值Ca2+电流增强。

Augmentation of transient low-threshold Ca2+ current induced by GTP-binding protein signal transduction system in GH3 pituitary cells.

作者信息

Suzuki N, Takagi H, Yoshioka T, Tanakadate A, Kano M

机构信息

Department of Physiology, School of Medicine, Kitasato University, Kanagawa, Japan.

出版信息

Biochem Biophys Res Commun. 1992 Aug 31;187(1):529-36. doi: 10.1016/s0006-291x(05)81526-8.

Abstract

We characterized the effects of thyrotropin-releasing hormone (TRH; 500 nM) and guanosine 5'-0-3-thiotriphosphate (GTP gamma S; 50 microM) on two types of Ca2+ currents in pituitary-hormone-secretory GH3 cells and were surprised to find marked increases in transient, low-threshold Ca2+ currents (T currents) induced by extracellularly applied TRH or intracellularly applied GTP gamma S. The effect of TRH was blocked by intracellularly applied guanosine 5'-0-2-thiodiphosphate (GDP beta S; 100 microM). The increase in the T current was found to be accompanied by a decrease in long-lasting, high-threshold Ca2+ current (L-current), in response to both TRH or GTP gamma S. These indicate that the enhancement of Ca2+ influx by TRH (500 nM) is largely conferred by T currents in GH3 cells. A reduced concentration of TRH (5 nM) still markedly increased the T current, but failed to decrease the L current. These data suggest that the augmentation of the T currents as well as depression of the L currents by TRH (500 nM), through the activation of a GTP-binding protein, may constitute an important regulatory mechanism of sustained pituitary hormone secretion in GH3 cells.

摘要

我们研究了促甲状腺激素释放激素(TRH;500 nM)和鸟苷5'-O-3-硫代三磷酸(GTPγS;50 μM)对垂体激素分泌型GH3细胞中两种类型钙电流的影响,结果惊讶地发现,细胞外施加TRH或细胞内施加GTPγS均可显著增加瞬时、低阈值钙电流(T电流)。TRH的作用可被细胞内施加的鸟苷5'-O-2-硫代二磷酸(GDPβS;100 μM)阻断。发现T电流增加的同时,对TRH或GTPγS的反应中,持久的高阈值钙电流(L电流)会减少。这些结果表明,TRH(500 nM)增强钙内流主要是由GH3细胞中的T电流介导的。较低浓度的TRH(5 nM)仍可显著增加T电流,但未能降低L电流。这些数据表明,TRH(500 nM)通过激活鸟苷结合蛋白增加T电流并降低L电流,可能构成GH3细胞中垂体激素持续分泌的重要调节机制。

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