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激活蛋白-1与Smad蛋白协同调节人促卵泡激素β启动子活性。

Activator protein-1 and smad proteins synergistically regulate human follicle-stimulating hormone beta-promoter activity.

作者信息

Wang Ying, Fortin Jérôme, Lamba Pankaj, Bonomi Marco, Persani Luca, Roberson Mark S, Bernard Daniel J

机构信息

Department of Pharmacology and Therapeutics, McGill University, Montreal, Quebec, Canada. daniel.

出版信息

Endocrinology. 2008 Nov;149(11):5577-91. doi: 10.1210/en.2008-0220. Epub 2008 Jul 24.

Abstract

GnRH1 stimulates the synthesis and secretion of FSH and LH from the anterior pituitary gland. The molecular mechanisms through which GnRH1 produces these effects in humans have not been determined. Here, we examined transcriptional regulation of the human FSHbeta (FSHB) subunit using reporter assays in immortalized murine gonadotrope cells. GnRH1 dose and time dependently stimulated FSHB promoter activity, with peak stimulation occurring at 8 h. GnRH1 rapidly stimulated various MAPK cascades, though the ERK1/2 and p38 pathways appeared to be most critical for FSHB induction. Indeed, constitutively active forms of both Raf1 kinase and MAP2K6 (MKK6) were sufficient to stimulate reporter activity. GnRH1 stimulated activator protein-1 (AP-1) (FosB, c-fos, JunB, and cJun) synthesis and complex formation, the latter of which bound to a conserved cis-element within -120 bp of the transcription start site. A second, lower affinity, site was mapped more proximally. Mutations of both cis-elements diminished GnRH1-stimulated promoter activity, though disruption of the higher affinity site had a more dramatic effect. A dominant-negative Fos protein dose dependently inhibited GnRH1-stimulated FSHB transcription, confirming a role for endogenous AP-1 proteins. MAPK kinase 1 (MEK1) and p38 inhibitors significantly attenuated GnRH1-stimulated c-fos, FosB, and JunB synthesis, suggesting a mechanism whereby the ERK1/2 and p38 signaling pathways regulate FSHB transcription. Activins and inhibins potently regulate FSH synthesis in rodents, but their roles in FSH regulation in humans are less clear. Activin A, though weak on its own, synergized with GnRH1 to stimulate human FSHB promoter activity. In contrast, activin A partially inhibited GnRH1-stimulated LHbeta subunit (LHB) transcription. The GnRH1 and activin A signaling pathways appear to converge at the level of the high-affinity AP-1 site. Fos and Jun proteins synergistically regulate reporter activity through this element, and their effects are potentiated by coexpression of either Smad2 or Smad3, effectors in the activin signaling cascade. In summary, GnRH1 and activin A synergistically regulate human FSHB subunit transcription. The combined actions of AP-1 and Smad proteins acting through a conserved AP-1 element provide a candidate mechanism for this effect. The ability of activins to potentiate selectively the effects of GnRH1 on FSHB expression suggests a model for preferential increases in FSH secretion at the luteal-follicular transition of the menstrual cycle.

摘要

促性腺激素释放激素1(GnRH1)刺激垂体前叶合成和分泌促卵泡激素(FSH)和促黄体生成素(LH)。GnRH1在人类中产生这些效应的分子机制尚未确定。在此,我们使用永生化小鼠促性腺激素细胞中的报告基因测定法,研究了人类FSHβ(FSHB)亚基的转录调控。GnRH1剂量和时间依赖性地刺激FSHB启动子活性,在8小时时出现最大刺激。GnRH1迅速刺激各种丝裂原活化蛋白激酶(MAPK)级联反应,尽管细胞外信号调节激酶1/2(ERK1/2)和p38途径似乎对FSHB诱导最为关键。事实上,Raf1激酶和丝裂原活化蛋白激酶6(MKK6)的组成型活性形式足以刺激报告基因活性。GnRH1刺激活化蛋白-1(AP-1)(FosB、c-fos、JunB和cJun)的合成和复合物形成,后者与转录起始位点-120 bp内的保守顺式元件结合。第二个亲和力较低的位点定位在更近端。两个顺式元件的突变均降低了GnRH1刺激的启动子活性,尽管高亲和力位点的破坏具有更显著的影响。显性负性Fos蛋白剂量依赖性地抑制GnRH1刺激的FSHB转录,证实了内源性AP-1蛋白的作用。丝裂原活化蛋白激酶激酶1(MEK1)和p38抑制剂显著减弱GnRH1刺激的c-fos、FosB和JunB合成,提示ERK1/2和p38信号通路调节FSHB转录的机制。激活素和抑制素在啮齿动物中有力地调节FSH合成,但它们在人类FSH调节中的作用尚不清楚。激活素A虽然自身作用较弱,但与GnRH1协同刺激人类FSHB启动子活性。相反,激活素A部分抑制GnRH1刺激的促黄体生成素β亚基(LHB)转录。GnRH1和激活素A信号通路似乎在高亲和力AP-1位点水平汇聚。Fos和Jun蛋白通过该元件协同调节报告基因活性,并通过共表达Smad2或Smad3(激活素信号级联反应中的效应器)增强其作用。总之,GnRH1和激活素A协同调节人类FSHB亚基转录。AP-1和Smad蛋白通过保守的AP-1元件共同作用,为这种效应提供了一种可能的机制。激活素选择性增强GnRH1对FSHB表达的作用,提示了月经周期黄体-卵泡转换期FSH分泌优先增加的模型。

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