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促性腺激素释放激素诱导的克隆垂体促性腺细胞中的钙信号传导。

Gonadotropin-releasing hormone-induced calcium signaling in clonal pituitary gonadotrophs.

作者信息

Merelli F, Stojilković S S, Iida T, Krsmanovic L Z, Zheng L, Mellon P L, Catt K J

机构信息

Endocrinology and Reproduction Research Branch, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Endocrinology. 1992 Aug;131(2):925-32. doi: 10.1210/endo.131.2.1379169.

Abstract

In agonist-stimulated clonal pituitary gonadotrophs (alpha T3-1 cells), cytoplasmic calcium ([Ca2+]i) exhibited rapid and prominent peak increases, followed by lower, but sustained, elevations for up to 15 min. The [Ca2+]i response to GnRH was rapidly inhibited by prior addition of a potent GnRH antagonist. In the absence of extracellular Ca2+ the initial peak [Ca2+]i response was only slightly decreased, but the prolonged increase in [Ca2+]i was abolished, indicating that the peak is derived largely from intracellular calcium mobilization and the sustained phase from Ca2+ influx. Application of the endoplasmic reticulum Ca(2+)-ATPase blocker thapsigargin caused progressive and dose-dependent elevation of [Ca2+]i and decreased the peak amplitude of the GnRH-induced Ca2+ response. On the other hand, addition of dihydropyridine calcium channel antagonists before or after GnRH treatment prevented or terminated the plateau phase, respectively, consistent with entry of Ca2+ through L-type voltage-sensitive Ca2+ channels (VSCC) as the major Ca2+ influx pathway during GnRH action. The presence of L-type VSCC in alpha T3-1 cells was further indicated by the ability of elevated extracellular K+ levels and the dihydropyridine calcium channel agonist Bay K 8644 to elevate [Ca2+]i in an extracellular calcium-dependent manner. These actions of depolarization and Bay K 8644 were inhibited by nifedipine, with an IC50 of 10 nM. High extracellular K(+)- and GnRH-induced Ca2+ entry was also attenuated by phorbol esters and permeant diacylglycerols, indicating that protein kinase-C exerts inhibitory modulation of VSCC activity. In contrast to normal pituitary gonadotrophs, in which GnRH induces a frequency-modulated oscillatory [Ca2+]i response, single alpha T3-1 cells exhibited a nonoscillatory amplitude-modulated signal during agonist stimulation. The [Ca2+]i responses observed in alpha T3-1 gonadotrophs indicate that the immortalized cells retain functional GnRH receptors and their coupling to the Ca2+ signaling pathway. Ca2+ influx through L-type channels maintains the plateau phase of the [Ca2+]i response during agonist stimulation and is inhibited by activation of protein kinase-C.

摘要

在激动剂刺激的垂体促性腺激素克隆细胞(αT3 - 1细胞)中,细胞质钙([Ca2+]i)呈现快速且显著的峰值升高,随后是较低但持续的升高,持续长达15分钟。预先添加强效促性腺激素释放激素(GnRH)拮抗剂可迅速抑制[Ca2+]i对GnRH的反应。在无细胞外Ca2+的情况下,初始峰值[Ca2+]i反应仅略有降低,但[Ca2+]i的持续升高被消除,这表明峰值主要源于细胞内钙动员,而持续阶段源于Ca2+内流。应用内质网Ca(2+)-ATP酶阻滞剂毒胡萝卜素导致[Ca2+]i进行性且剂量依赖性升高,并降低GnRH诱导的Ca2+反应的峰值幅度。另一方面,在GnRH处理之前或之后添加二氢吡啶钙通道拮抗剂分别阻止或终止了平台期,这与Ca2+通过L型电压敏感性Ca2+通道(VSCC)内流作为GnRH作用期间主要的Ca2+内流途径一致。细胞外K+水平升高和二氢吡啶钙通道激动剂Bay K 8644以细胞外钙依赖性方式升高[Ca2+]i的能力进一步表明αT3 - 1细胞中存在L型VSCC。去极化和Bay K 8644的这些作用被硝苯地平抑制,IC50为10 nM。佛波酯和渗透性二酰基甘油也减弱了高细胞外K+和GnRH诱导的Ca2+内流,表明蛋白激酶C对VSCC活性发挥抑制性调节作用。与正常垂体促性腺激素细胞不同,在正常垂体促性腺激素细胞中GnRH诱导频率调制的振荡性[Ca2+]i反应,单个αT3 - 1细胞在激动剂刺激期间表现出非振荡性幅度调制信号。在αT3 - 1促性腺激素细胞中观察到的[Ca2+]i反应表明,永生化细胞保留了功能性GnRH受体及其与Ca2+信号通路的偶联。通过L型通道的Ca2+内流在激动剂刺激期间维持[Ca2+]i反应的平台期,并被蛋白激酶C的激活所抑制。

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