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非经典雌激素受体α信号传导介导雌性小鼠生殖轴的负反馈。

Nonclassical estrogen receptor alpha signaling mediates negative feedback in the female mouse reproductive axis.

作者信息

Glidewell-Kenney C, Hurley L A, Pfaff L, Weiss J, Levine J E, Jameson J L

机构信息

Division of Endocrinology, Metabolism, and Molecular Medicine, The Feinberg School of Medicine, Northwestern University, Chicago, IL 60611-3008, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 May 8;104(19):8173-7. doi: 10.1073/pnas.0611514104. Epub 2007 Apr 30.

Abstract

Ovarian estrogen exerts both positive and negative feedback control over luteinizing hormone (LH) secretion during the ovulatory cycle. Estrogen receptor (ER) alpha but not ERbeta knockout mice lack estrogen feedback. Thus, estrogen feedback appears to be primarily mediated by ERalpha. However, it is now recognized that, in addition to binding to estrogen response elements (EREs) in DNA to alter target gene transcription, ERalpha signals through ERE-independent or nonclassical pathways, and the relative contributions of these pathways in conveying estrogen feedback remain unknown. Previously we created a knockin mouse model expressing a mutant form of ERalpha (AA) with ablated ERE-dependent but intact ERE-independent activity. Breeding this allele onto the ERalpha-null (-/-) background, we examine the ability of ERE-independent ERalpha signaling pathways to convey estrogen feedback regulation of the female hypothalamic-pituitary axis in vivo. ERalpha-/AA exhibited 69.9% lower serum LH levels compared with ERalpha-/- mice. Additionally, like wild type, ERalpha-/AA mice exhibited elevated LH after ovariectomy (OVX). Furthermore, the post-OVX rise in serum LH was significantly suppressed by estrogen treatment in OVX ERalpha-/AA mice. However, unlike wild type, both ERalpha-/AA and ERalpha-/- mice failed to exhibit estrous cyclicity, spontaneous ovulation, or an afternoon LH surge response to estrogen. These results indicate that ERE-independent ERalpha signaling is sufficient to convey a major portion of estrogen's negative feedback actions, whereas positive feedback and spontaneous ovulatory cyclicity require ERE-dependent ERalpha signaling.

摘要

在排卵周期中,卵巢雌激素对促黄体生成素(LH)的分泌发挥着正负反馈控制作用。雌激素受体(ER)α基因敲除小鼠而非ERβ基因敲除小鼠缺乏雌激素反馈。因此,雌激素反馈似乎主要由ERα介导。然而,现在人们认识到,除了与DNA中的雌激素反应元件(ERE)结合以改变靶基因转录外,ERα还通过不依赖ERE或非经典途径发出信号,而这些途径在传递雌激素反馈中的相对作用仍不清楚。此前,我们创建了一种敲入小鼠模型,该模型表达一种具有缺失的依赖ERE但完整的不依赖ERE活性的ERα突变形式(AA)。将该等位基因培育到ERα基因敲除(-/-)背景上,我们在体内研究不依赖ERE的ERα信号通路传递雌激素对雌性下丘脑-垂体轴反馈调节的能力。与ERα-/-小鼠相比,ERα-/AA小鼠的血清LH水平低69.9%。此外,与野生型一样,ERα-/AA小鼠在卵巢切除(OVX)后LH水平升高。此外,在OVX的ERα-/AA小鼠中,雌激素处理显著抑制了OVX后血清LH的升高。然而,与野生型不同的是,ERα-/AA和ERα-/-小鼠均未表现出发情周期、自发排卵或对雌激素的下午LH激增反应。这些结果表明,不依赖ERE的ERα信号足以传递雌激素负反馈作用的大部分,而正反馈和自发排卵周期则需要依赖ERE的ERα信号。

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