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促甲状腺激素释放激素诱导的胞质游离钙离子浓度尖峰和平台期与激素分泌的关系。使用离子霉素和硝苯地平进行选择性阻断。

Relationship of thyrotropin-releasing hormone-induced spike and plateau phases in cytosolic free Ca2+ concentrations to hormone secretion. Selective blockade using ionomycin and nifedipine.

作者信息

Albert P R, Tashjian A H

出版信息

J Biol Chem. 1984 Dec 25;259(24):15350-63.

PMID:6439720
Abstract

In clonal rat pituitary cells (GH cells), thyrotropin-releasing hormone (TRH) induced a pattern of changes in cytosolic free calcium concentrations [( Ca2+]i) composed of two phases: an acute spike phase to micromolar levels which decayed (t1/2 = 8 s) to a near-basal concentration and then rose to a prolonged plateau phase of elevated [Ca2+]i (as measured using Quin 2). Closely following these changes in [Ca2+]i, TRH stimulated a rapid "spike phase" of pronounced, but brief, enhancement of the rate of prolactin and growth-hormone secretion and then a "plateau phase" of prolonged enhancement. These two phases were dissociated using two classes of pharmacologic agents: the ionophore ionomycin, and a calcium channel antagonist nifedipine. Ionomycin (100 nM) specifically blocked (less than 90%) the spike phase of TRH action by rapidly emptying the TRH-regulated reservoir of cellular Ca2+ to generate a TRH-like spike in [Ca2+]i; nifedipine inhibited (less than 50%) the plateau phase of TRH-induced changes in [Ca2+]i and hormone secretion by preventing Ca2+ influx through voltage-dependent Ca2+ channels. These agents demonstrated that the TRH-induced spike in [Ca2+]i in GH cells is caused by release of an ionomycin-sensitive pool of cellular Ca2+ with a small component (10%) due to influx of extracellular Ca2+. The TRH-induced plateau in [Ca2+]i is due to influx of extracellular Ca2+, about half of which enters through voltage-dependent calcium channels and half of which enters via nifedipine/verapamil-insensitive influx. The TRH-induced spike in [Ca2+]i led to a burst in hormone secretion, and the plateau in [Ca2+]i produced a prolonged enhancement of secretion; the spike and plateau phases were generated independently by TRH. A spike in [Ca2+]i is necessary, but not sufficient, to induce burst release of hormone, while the prolonged rate of hormone secretion is intimately related to the steady-state [Ca2+]i.

摘要

在克隆大鼠垂体细胞(生长激素细胞)中,促甲状腺激素释放激素(TRH)诱导细胞溶质游离钙浓度[Ca2+]i出现一种变化模式,该模式由两个阶段组成:一个急性峰值阶段,[Ca2+]i升至微摩尔水平,随后衰减(半衰期t1/2 = 8秒)至接近基础浓度,然后升至[Ca2+]i升高的延长平台期(使用喹啉2测量)。紧随[Ca2+]i的这些变化,TRH刺激了催乳素和生长激素分泌速率快速的“峰值阶段”增强,但持续时间短暂,随后是延长增强的“平台期”。使用两类药理剂可区分这两个阶段:离子载体离子霉素和钙通道拮抗剂硝苯地平。离子霉素(100 nM)通过迅速排空TRH调节的细胞内Ca2+储备,特异性阻断(小于90%)TRH作用的峰值阶段,从而在[Ca2+]i中产生类似TRH的峰值;硝苯地平通过阻止Ca2+通过电压依赖性Ca2+通道内流,抑制(小于50%)TRH诱导的[Ca2+]i变化和激素分泌的平台期。这些药剂表明,GH细胞中TRH诱导的[Ca2+]i峰值是由细胞内对离子霉素敏感的Ca2+池释放引起的,其中一小部分(10%)是由于细胞外Ca2+内流。TRH诱导的[Ca2+]i平台期是由于细胞外Ca2+内流,其中约一半通过电压依赖性钙通道进入,另一半通过对硝苯地平/维拉帕米不敏感的内流进入。TRH诱导的[Ca2+]i峰值导致激素分泌爆发,[Ca2+]i平台期产生分泌的延长增强;峰值和平台期由TRH独立产生。[Ca2+]i峰值是诱导激素爆发释放所必需的,但不是充分条件,而激素分泌的延长速率与稳态[Ca2+]i密切相关。

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