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Bay K 8644对映体对垂体细胞钙电流、催乳素分泌及合成的相反作用。

Opposing actions of Bay K 8644 enantiomers on calcium current, prolactin secretion, and synthesis in pituitary cells.

作者信息

Enyeart J J, Biagi B, Day R N

机构信息

Department of Pharmacology, Ohio State University, Columbus 43210-1239.

出版信息

Mol Endocrinol. 1990 May;4(5):727-35. doi: 10.1210/mend-4-5-727.

DOI:10.1210/mend-4-5-727
PMID:1703274
Abstract

Dihydropyridine (DHP) Ca2+ channel modulators were used to explore the relationship between voltage-gated Ca2+ channels and PRL secretion, synthesis, and mRNA in PRL-secreting pituitary cells. Optical isomers of the Ca2+ channel agonist Bay K 8644 produced stereospecific and opposing effects on L-type Ca2+ current, PRL release, and synthesis in GH3 and GH4C1 cells. (-)-Bay K 8644 (R5417) behaved as a pure agonist, enhancing Ca2+ current several-fold while shifting the current-voltage curve 10-15 mV in the hyperpolarizing direction. The agonist effect was independent of holding potential, but decreased during prolonged Ba2+ or Ca2+ entry. R5417 produced a concentration-dependent increase in acute PRL release and enhanced PRL production by GH cells several-fold during a 72-h period. (+)-Bay K 8644 (R4407) behaved as a weak Ca2+ channel antagonist, inhibiting L-type Ca2+ current, KCl-stimulated PRL secretion, and PRL production at concentrations of 0.5-5 microM. These two isomers produced similar effects on PRL production by normal rat pituitary cells in dispersed culture. R5417 (500 nM) increased PRL produced in 72 h to 233 +/- 8% of the control value. R4407 reduced this quantity by 36 +/- 9%. The effects of the DHPs on PRL mRNA levels were consistent with the effects observed for acute secretion and hormone production. The agonist R5417 increased PRL mRNA 147 +/- 5% over a 30-h period, and the potent DHP Ca2+ channel blocker nimodipine inhibited PRL mRNA production 2-fold. These results demonstrate that racemic Bay K 8644 interacts with L-type Ca2+ channels in normal and transformed pituitary cells as a mixed agonist-antagonist.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

二氢吡啶(DHP)钙离子通道调节剂被用于探究电压门控钙离子通道与催乳素分泌、合成以及催乳素分泌型垂体细胞中mRNA之间的关系。钙离子通道激动剂Bay K 8644的光学异构体对GH3和GH4C1细胞中的L型钙电流、催乳素释放及合成产生立体特异性且相反的作用。(-)-Bay K 8644(R5417)表现为纯激动剂,使钙电流增强数倍,同时使电流-电压曲线向超极化方向移动10 - 15 mV。激动剂效应与保持电位无关,但在长时间的钡离子或钙离子内流期间减弱。R5417使急性催乳素释放呈浓度依赖性增加,并在72小时内使GH细胞的催乳素产生增加数倍。(+)-Bay K 8644(R4407)表现为弱钙离子通道拮抗剂,在0.5 - 5 microM浓度下抑制L型钙电流、氯化钾刺激的催乳素分泌及催乳素产生。这两种异构体对分散培养的正常大鼠垂体细胞的催乳素产生有相似作用。R5417(500 nM)使72小时内产生的催乳素增加至对照值的233±8%。R4407使该量减少36±9%。二氢吡啶类药物对催乳素mRNA水平的影响与急性分泌和激素产生所观察到的效应一致。激动剂R5417在30小时内使催乳素mRNA增加147±5%,强效二氢吡啶钙离子通道阻滞剂尼莫地平使催乳素mRNA产生减少2倍。这些结果表明,消旋Bay K 8644在正常及转化的垂体细胞中作为混合激动剂-拮抗剂与L型钙离子通道相互作用。(摘要截短于250字)

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