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Agonist-specific and sexual stage-dependent inhibition of gonadotropin-releasing hormone-stimulated gonadotropin and growth hormone release by ryanodine: Relationship to sexual stage-dependent caffeine-sensitive hormone release

机译:瑞安定对激动剂的促性腺激素释放激素刺激的促性腺激素和生长激素释放的特异性和性阶段依赖性抑制:与性阶段依赖性咖啡因敏感性激素释放的关系

摘要

Differential utilization of intracellular Ca2+ stores with specific functional characteristics could be a potential mechanism for coupling various stimuli to specific cellular responses. In the goldfish pituitary, both gonadotropes and somatotropes possess multiple intracellular Ca2+ stores that are differentially coupled to agonist-evoked exocytosis. We investigated the role of ryanodine receptor/Ca2+-release channels (RyR) in basal and gonadotropin-releasing hormone (GnRH)-evoked hormone secretion from cultured gonadotropes and somatotropes using radioimmunoassay for gonadotropin (GTH-II) and growth hormone (GH). As is the case in vivo, the basal and evoked secretion of both hormones varied with seasonal reproductive status. GnRH-stimulated hormone release was three-fold higher in cells from sexually mature animals compared to those in a sexually regressed state. Nanomolar doses of ryanodine evoked significant GTH-II and GH secretion, suggesting that ryanodine-sensitive Ca2+ stores can couple to exocytosis in both cell types. In gonadotropes, 10 μM ryanodine abolished cGnRH-II-evoked GTH-II release in both sexually mature and sexually regressed fish, while sGnRH signalling was mediated by ryanodine-sensitive Ca2+ stores in cells from sexually regressed fish only. Ryanodine-sensitive Ca2+ stores in somatotropes were only involved in cGnRH-II-stimulated GH release during gonadal regression. In contrast, sGnRH-stimulated, but not cGnRH-II-stimulated, GH release was significantly reduced by 1 μM xestospongin C. Although hormone release stimulated by mobilizing caffeine-sensitive Ca2+ pools was also markedly seasonal, it was largely independent of ryanodine-sensitive Ca2+ stores. Ryanodine-sensitive Ca2+ stores in both cell types are not active downstream of ionomycin, BayK 8644, protein kinase C or cyclic adenosine monophosphate signalling pathways, suggesting difference from a classical Ca2+-induced Ca2+ release system. Ours study is the first to suggest that RyR2 may be involved in the seasonal plasticity of pituitary function, which may be related to cyclic changes observed in reproduction and growth.
机译:具有特定功能特征的细胞内Ca2 +存储的差异利用可能是将各种刺激与特定细胞反应耦合的潜在机制。在金鱼垂体中,促性腺激素和促生长素都具有多个细胞内Ca2 +储存,这些储存与激动剂引起的胞吐作用有差异。我们使用放射免疫法测定促性腺激素(GTH-II)和生长激素(GH),研究了赖氨酸碱受体/ Ca2 +-释放通道(RyR)在培养促性腺激素和生长激素的基础和促性腺激素释放激素(GnRH)诱发的激素分泌中的作用。与体内情况一样,两种激素的基础分泌和诱发分泌随季节生殖状况而变化。与处于性退化状态的动物相比,来自性成熟动物的细胞中GnRH刺激的激素释放高出三倍。纳摩尔剂量的ryanodine引起显着的GTH-II和GH分泌,这表明ryanodine敏感的Ca2 +存储可以在两种细胞类型中与胞吐作用耦合。在促性腺激素中,在性成熟和性退化的鱼类中,10μMryanodine消除了cGnRH-II诱发的GTH-II释放,而sGnRH信号传导仅由性退化的鱼类细胞中的对ryanodine敏感的Ca2 +储存介导。生长激素中对Ryanodine敏感的Ca2 +储存仅在性腺退化过程中参与cGnRH-II刺激的GH释放。相比之下,sGnRH刺激而非cGnRH-II刺激的GH释放显着降低了1μM的倍他司ponginC。尽管通过调动对咖啡因敏感的Ca2 +池刺激的激素释放也具有明显的季节性,但在很大程度上与瑞丹定敏感无关Ca2 +商店。在两种细胞类型中,对Ryanodine敏感的Ca2 +存储在离子霉素,BayK 8644,蛋白激酶C或环状单磷酸腺苷信号通路的下游均不活跃,这表明与经典的Ca2 +诱导的Ca2 +释放系统不同。我们的研究首次表明RyR2可能参与垂体功能的季节性可塑性,这可能与生殖和生长过程中观察到的周期性变化有关。

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