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激动剂刺激的垂体促性腺细胞双相胞质钙和分泌反应过程中的钙动员与内流。

Calcium mobilization and influx during the biphasic cytosolic calcium and secretory responses in agonist-stimulated pituitary gonadotrophs.

作者信息

Izumi S, Stojilković S S, Catt K J

机构信息

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

出版信息

Arch Biochem Biophys. 1989 Dec;275(2):410-28. doi: 10.1016/0003-9861(89)90388-3.

Abstract

Stimulation of enriched pituitary gonadotrophs by gonadotropin-releasing hormone (GnRH) elicits dose-dependent biphasic elevations of cytosolic calcium ([Ca2+]i) and luteinizing hormone (LH) release, with rapid initial peaks followed by sustained plateaus during continued exposure to the agonist. A potent GnRH-antagonist, [N-acetyl-D-p-Cl-Phe1,2,D-Trp3,D-Lys6,D-Ala10]GnRH, prevented the biphasic [Ca2+]i and LH responses when added before GnRH, and rapidly abolished both responses to GnRH when added during the plateau phase. In low Ca2+ medium the LH peak responses to GnRH were reduced and the subsequent sustained responses were almost completely abolished; reduction of extracellular Ca2+ during exposure to GnRH caused a prompt decline of LH release. The initial [Ca2+]i peak is derived largely from intracellular calcium mobilization with a partial contribution from calcium influx, while the sustained phase is dependent on the entry of extracellular Ca2+ through both L-type and dihydropyridine-insensitive channels. The presence of L-type voltage-sensitive calcium channels (VSCC) in pituitary gonadotrophs was indicated by the ability of elevated extracellular [K+] to stimulate calcium influx and LH release, and the sensitivity of these responses to dihydropyridine agonist and antagonist analogs. In cells pretreated with high [K+], the peak [Ca2+]i response to GnRH was enhanced but the subsequent plateau phase was markedly attenuated. This divergent effect of sustained membrane depolarization on the biphasic [Ca2+]i response suggests that calcium entry through VSCC initially potentiates agonist-induced mobilization of Ca2+ from intracellular storage sites. However, established Ca2+ entry through depolarization-activated VSCC cannot be further increased by agonist stimulation because both processes operate through the same channels, probably by changes in their activation-inactivation kinetics. Finally, the reciprocal potentiation by the dihydropyridine agonist, BK 8644, and GnRH of [Ca2+]i and LH responses confirms that both compounds act on the same type of channels, i.e., L-type VSCC, that participate in agonist-mediated calcium influx and gonadotropin secretion.

摘要

促性腺激素释放激素(GnRH)刺激富集的垂体促性腺细胞会引发胞质钙([Ca2+]i)和促黄体生成素(LH)释放呈剂量依赖性的双相升高,在持续暴露于激动剂期间,先是快速出现峰值,随后是持续的平台期。一种强效的GnRH拮抗剂,即[N-乙酰-D-p-对氯苯丙氨酸1,2,D-色氨酸3,D-赖氨酸6,D-丙氨酸10]GnRH,在GnRH之前添加时可阻止双相[Ca2+]i和LH反应,在平台期添加时则迅速消除对GnRH的两种反应。在低钙培养基中,对GnRH的LH峰值反应降低,随后的持续反应几乎完全消除;在暴露于GnRH期间降低细胞外钙会导致LH释放迅速下降。最初的[Ca2+]i峰值主要来自细胞内钙动员,部分来自钙内流,而持续期则取决于细胞外钙通过L型和对二氢吡啶不敏感的通道进入。垂体促性腺细胞中存在L型电压敏感性钙通道(VSCC),这可通过细胞外[K+]升高刺激钙内流和LH释放的能力以及这些反应对二氢吡啶激动剂和拮抗剂类似物的敏感性来表明。在用高[K+]预处理的细胞中,对GnRH的[Ca2+]i峰值反应增强,但随后的平台期明显减弱。持续膜去极化对双相[Ca2+]i反应的这种不同影响表明,通过VSCC的钙内流最初会增强激动剂诱导的细胞内储存位点的钙动员。然而,通过去极化激活的VSCC建立的钙内流不能通过激动剂刺激进一步增加,因为这两个过程通过相同的通道起作用,可能是通过它们激活-失活动力学的变化。最后,二氢吡啶激动剂BK 8644和GnRH对[Ca2+]i和LH反应的相互增强证实了这两种化合物作用于同一类型的通道,即L型VSCC,其参与激动剂介导的钙内流和促性腺激素分泌。

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