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垂体催乳素细胞中电活动和钙内流控制的催乳素释放对腺苷酸环化酶信号通路的依赖性。

Dependence of electrical activity and calcium influx-controlled prolactin release on adenylyl cyclase signaling pathway in pituitary lactotrophs.

作者信息

Gonzalez-Iglesias Arturo E, Jiang Yonghua, Tomić Melanija, Kretschmannova Karla, Andric Silvana A, Zemkova Hana, Stojilkovic Stanko S

机构信息

Section on Cellular Signaling, Endocrinology and Reproduction Research Branch/National Institute of Child Health and Human Development/National Institutes of Health, Building 49, Room 6A-36, 49 Convent Drive, Bethesda, Maryland 20892-4510, USA.

出版信息

Mol Endocrinol. 2006 Sep;20(9):2231-46. doi: 10.1210/me.2005-0363. Epub 2006 Apr 27.

Abstract

Pituitary lactotrophs in vitro fire extracellular Ca2+-dependent action potentials spontaneously through still unidentified pacemaking channels, and the associated voltage-gated Ca2+influx (VGCI) is sufficient to maintain basal prolactin (PRL) secretion high and steady. Numerous plasma membrane channels have been characterized in these cells, but the mechanism underlying their pacemaking activity is still not known. Here we studied the relevance of cyclic nucleotide signaling pathways in control of pacemaking, VGCI, and PRL release. In mixed anterior pituitary cells, both VGCI-inhibitable and -insensitive adenylyl cyclase (AC) subtypes contributed to the basal cAMP production, and soluble guanylyl cyclase was exclusively responsible for basal cGMP production. Inhibition of basal AC activity, but not soluble guanylyl cyclase activity, reduced PRL release. In contrast, forskolin stimulated cAMP and cGMP production as well as pacemaking, VGCI, and PRL secretion. Elevation in cAMP and cGMP levels by inhibition of phosphodiesterase activity was also accompanied with increased PRL release. The AC inhibitors attenuated forskolin-stimulated cyclic nucleotide production, VGCI, and PRL release. The cell-permeable 8-bromo-cAMP stimulated firing of action potentials and PRL release and rescued hormone secretion in cells with inhibited ACs in an extracellular Ca2+-dependent manner, whereas 8-bromo-cGMP and 8-(4-chlorophenylthio)-2'-O-methyl-cAMP were ineffective. Protein kinase A inhibitors did not stop spontaneous and forskolin-stimulated pacemaking, VGCI, and PRL release. These results indicate that cAMP facilitates pacemaking, VGCI, and PRL release in lactotrophs predominantly in a protein kinase A- and Epac cAMP receptor-independent manner.

摘要

体外培养的垂体催乳素细胞通过仍未明确的起搏通道自发产生细胞外Ca2+依赖性动作电位,相关的电压门控Ca2+内流(VGCI)足以维持基础催乳素(PRL)分泌的高水平和稳定性。这些细胞中已鉴定出许多质膜通道,但其起搏活动的潜在机制仍不清楚。在此,我们研究了环核苷酸信号通路在起搏、VGCI和PRL释放控制中的相关性。在混合的垂体前叶细胞中,VGCI可抑制和不可抑制的腺苷酸环化酶(AC)亚型均参与基础cAMP的产生,而可溶性鸟苷酸环化酶专门负责基础cGMP的产生。抑制基础AC活性而非可溶性鸟苷酸环化酶活性可降低PRL释放。相反,福斯可林刺激cAMP和cGMP的产生以及起搏、VGCI和PRL分泌。通过抑制磷酸二酯酶活性提高cAMP和cGMP水平也伴随着PRL释放增加。AC抑制剂减弱了福斯可林刺激的环核苷酸产生、VGCI和PRL释放。可渗透细胞的8-溴-cAMP以细胞外Ca2+依赖的方式刺激动作电位发放和PRL释放,并挽救了AC受抑制细胞中的激素分泌,而8-溴-cGMP和8-(4-氯苯硫基)-2'-O-甲基-cAMP无效。蛋白激酶A抑制剂并未阻止自发的和福斯可林刺激的起搏、VGCI和PRL释放。这些结果表明,cAMP主要以不依赖蛋白激酶A和Epac cAMP受体的方式促进催乳素细胞的起搏、VGCI和PRL释放。

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