首页> 外文期刊>American Journal of Physiology >Signaling mechanisms for alpha2-adrenergic inhibition of PACAP-induced growth hormone secretion and gene expression grass carp pituitary cells.
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Signaling mechanisms for alpha2-adrenergic inhibition of PACAP-induced growth hormone secretion and gene expression grass carp pituitary cells.

机译:α2-肾上腺素抑制PACAP诱导的生长激素分泌和基因表达草鱼垂体细胞的信号传导机制。

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摘要

Pituitary adenylate cyclase-activating polypeptide (PACAP) is a potent growth hormone (GH)-releasing factor in lower vertebrates. However, its functional interactions with other GH regulators have not been fully characterized. In fish models, norepinephrine (NE) inhibits GH release at the pituitary cell level, but its effects on GH synthesis have yet to be determined. We examined adrenergic inhibition of PACAP-induced GH secretion and GH gene expression using grass carp pituitary cells as a cell model. Through activation of pituitary alpha2-adrenoreceptors, NE or the alpha2-agonist clonidine reduced both basal and PACAP-induced GH release and GH mRNA expression. In carp pituitary cells, clonidine also suppressed cAMP production and intracellular Ca2+ levels and blocked PACAP induction of these two second messenger signals. In GH3 cells transfected with a reporter carrying the grass carp GH promoter, PACAP stimulation increased GH promoter activity, and this stimulatory effect could be abolished by NE treatment. In parallel experiments, clonidine reduced GH primary transcript and GH promoter activity without affecting GH mRNA stability, and these inhibitory actions were mimicked by inhibiting adenylate cyclase (AC), blocking protein kinase A (PKA), removing extracellular Ca2+ in the culture medium, or inactivating L-type voltage-sensitive Ca2+ channels (VSCC). Since our recent studies have shown that PACAP can induce GH secretion in carp pituitary cells through cAMP/PKA- and Ca2+/calmodulin-dependent mechanisms, these results, taken together, suggest that alpha2-adrenergic stimulation in the carp pituitary may inhibit PACAP-induced GH release and GH gene transcription by blocking the AC/cAMP/PKA pathway and Ca2+ entry through L-type VSCC.
机译:垂体腺苷酸环化酶激活多肽(PACAP)是低等脊椎动物中一种有效的生长激素(GH)释放因子。但是,其与其他GH调节剂的功能相互作用尚未得到充分表征。在鱼类模型中,去甲肾上腺素(NE)在垂体细胞水平上抑制GH的释放,但尚未确定其对GH合成的影响。我们使用草鱼垂体细胞作为细胞模型,检查了PACAP诱导的GH分泌和GH基因表达的肾上腺素抑制作用。通过激活垂体α2肾上腺素受体,NE或α2激动剂可乐定降低了基础和PACAP诱导的GH释放和GH mRNA表达。在鲤鱼垂体细胞中,可乐定还抑制cAMP产生和细胞内Ca2 +水平,并阻止PACAP诱导这两个第二信使信号。在携带草鱼GH启动子的报告基因转染的GH3细胞中,PACAP刺激可增加GH启动子的活性,而NE处理可消除这种刺激作用。在平行实验中,可乐定在不影响GH mRNA稳定性的情况下降低了GH初级转录本和GH启动子活性,并且通过抑制腺苷酸环化酶(AC),阻断蛋白激酶A(PKA),去除培养基中的细胞外Ca2 +来模仿这些抑制作用。使L型压敏Ca2 +通道(VSCC)失活。由于我们最近的研究表明,PACAP可以通过cAMP / PKA-和Ca2 + /钙调蛋白依赖性机制诱导鲤鱼垂体中的GH分泌,这些结果加在一起表明,鲤鱼垂体中的α2-肾上腺素刺激可以抑制PACAP诱导的通过阻止AC / cAMP / PKA途径和Ca2 +通过L型VSCC进入,GH释放和GH基因转录。

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