Kim So-Youn, Weiss Jeffrey, Tong Minghan, Laronda Monica M, Lee Eun-Jig, Jameson J Larry
Morton 4-656, 303 East Chicago Avenue, Chicago, Illinois 60611, USA.
Endocrinology. 2009 Nov;150(11):5085-93. doi: 10.1210/en.2009-0313. Epub 2009 Sep 24.
Foxl2 is a forkhead transcription factor required for ovary development and ovarian follicle maturation. In this report, we identified and characterized a functional relationship between Foxl2 expression and estrogen receptor (ER)-alpha signaling. We show that Foxl2 has no effect on classical ERalpha-mediated transcription, which occurs through canonical estrogen response elements. However, Foxl2 suppresses ERalpha signaling through nonclassical tethered transcriptional pathways. Specifically, the selective ER modulator tamoxifen stimulates activator protein-1 (AP1)-dependent transcription via the ERalpha, and this enhancement is blocked by Foxl2. Two lines of evidence suggest that Foxl2 suppression is mediated by physical interactions with ERalpha rather than direct action at AP1 binding sites. First, ERalpha is coimmunoprecipitated with Foxl2. Second, activation of a upstream activating sequence (UAS) reporter by Gal4-cJun in the presence of ERalpha and tamoxifen was blocked by Foxl2, demonstrating suppression in the absence of an AP1 site. Cyclooxygenase-2 (COX2), which is required for ovulation, was identified through expression profiling as a candidate physiological target for nonclassical ERalpha signaling and thus modulation by ERalpha/Foxl2 interactions. This possibility was confirmed by two sets of experiments. COX2 protein levels were induced by ERalpha in the presence of tamoxifen, and protein expression was suppressed by Foxl2. In addition, ERalpha stimulation of the COX2 promoter was repressed by Foxl2. We conclude that ERalpha and Foxl2 interact and that Foxl2 selectively suppresses ERalpha-mediated transcription of AP1-regulated genes. These data provide a potential point of convergence for ERalpha and Foxl2 to regulate ovarian development and function.
Foxl2是一种卵巢发育和卵泡成熟所必需的叉头转录因子。在本报告中,我们鉴定并描述了Foxl2表达与雌激素受体(ER)-α信号传导之间的功能关系。我们发现,Foxl2对通过经典雌激素反应元件发生的经典ERα介导的转录没有影响。然而,Foxl2通过非经典的 tethered 转录途径抑制ERα信号传导。具体而言,选择性ER调节剂他莫昔芬通过ERα刺激激活蛋白-1(AP1)依赖性转录,而这种增强被Foxl2阻断。两条证据表明,Foxl2的抑制作用是通过与ERα的物理相互作用介导的,而不是直接作用于AP1结合位点。首先,ERα与Foxl2共免疫沉淀。其次,在存在ERα和他莫昔芬的情况下,Foxl2阻断了Gal4-cJun对上游激活序列(UAS)报告基因的激活,证明在没有AP1位点的情况下存在抑制作用。通过表达谱分析确定排卵所需的环氧化酶-2(COX2)是非经典ERα信号传导的候选生理靶点,因此是ERα/Foxl2相互作用调节的靶点。两组实验证实了这种可能性。在存在他莫昔芬的情况下,ERα诱导COX2蛋白水平,而Foxl2抑制蛋白表达。此外,Foxl2抑制了ERα对COX2启动子的刺激。我们得出结论,ERα和Foxl2相互作用,并且Foxl2选择性地抑制ERα介导的AP1调节基因的转录。这些数据为ERα和Foxl2调节卵巢发育和功能提供了一个潜在的交汇点。