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不依赖钙和依赖钙的机制调节促肾上腺皮质激素释放因子刺激的阿黑皮素原肽分泌和信使核糖核酸生成。

Calcium-independent and calcium-dependent mechanisms regulate corticotropin-releasing factor-stimulated proopiomelanocortin peptide secretion and messenger ribonucleic acid production.

作者信息

Dave J R, Eiden L E, Lozovsky D, Waschek J A, Eskay R L

出版信息

Endocrinology. 1987 Jan;120(1):305-10. doi: 10.1210/endo-120-1-305.

Abstract

We have evaluated the role of calcium in basal and secretagogue-stimulated release of beta-endorphin and PRL and the levels of their respective mRNAs in primary cultured rat anterior pituitary cells. Treatment of anterior pituitary cells with the calcium channel blocker methoxyverapamil (D600; 10 microM) or with calcium-free medium for 1 h did not alter the basal release of beta-endorphin and only partially blocked CRF (10 nM)-stimulated beta-endorphin release. In contrast to these effects of D600 or calcium-free medium on corticotrophs, both of these test conditions decreased basal secretion of PRL from lactotrophs by 50-70% and completely blocked forskolin (10 microM)-stimulated PRL secretion. Although omission of calcium from the culture medium caused a 50% decrease in basal levels of both proopiomelanocortin (POMC) and PRL mRNA, treatment of cells with D600 did not significantly alter the basal levels of POMC or PRL mRNA. Treatment of cells with D600 partially blocked CRF-stimulated elevation of POMC mRNA and forskolin-stimulated elevation of PRL mRNA. The calcium agonist barium (1 mM) produced a 2-fold increase in both beta-endorphin and PRL release, which was blocked by D600. Treatment of cells with barium had no effect on POMC mRNA levels, but increased PRL mRNA levels. D600 treatment of cells partially blocked barium-stimulated PRL mRNA levels. These findings demonstrate a calcium-dependent as well as a calcium-independent component of CRF-stimulated beta-endorphin secretion and CRF-stimulated POMC mRNA elevation. In contrast, PRL secretion and biosynthesis appear to be totally calcium-dependent processes.

摘要

我们评估了钙在基础状态以及促分泌素刺激下β-内啡肽和催乳素释放中的作用,以及在原代培养的大鼠垂体前叶细胞中它们各自mRNA的水平。用钙通道阻滞剂甲氧基维拉帕米(D600;10微摩尔)或无钙培养基处理垂体前叶细胞1小时,并未改变β-内啡肽的基础释放,仅部分阻断了促肾上腺皮质激素释放因子(CRF,10纳摩尔)刺激的β-内啡肽释放。与D600或无钙培养基对促肾上腺皮质激素细胞的这些作用相反,这两种实验条件均使催乳素细胞的催乳素基础分泌减少了50%-70%,并完全阻断了福斯高林(10微摩尔)刺激的催乳素分泌。虽然从培养基中去除钙导致阿黑皮素原(POMC)和催乳素mRNA的基础水平降低了50%,但用D600处理细胞并未显著改变POMC或催乳素mRNA的基础水平。用D600处理细胞部分阻断了CRF刺激的POMC mRNA升高以及福斯高林刺激的催乳素mRNA升高。钙激动剂钡(1毫摩尔)使β-内啡肽和催乳素的释放均增加了2倍,这一作用被D600阻断。用钡处理细胞对POMC mRNA水平无影响,但增加了催乳素mRNA水平。用D600处理细胞部分阻断了钡刺激的催乳素mRNA水平升高。这些发现表明,CRF刺激的β-内啡肽分泌和CRF刺激的POMC mRNA升高存在钙依赖性和非钙依赖性成分。相比之下,催乳素的分泌和生物合成似乎完全是钙依赖性过程。

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