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Dax1 调节雌性小鼠下丘脑雌激素感知的 ERα 依赖性。

Dax1 modulates ERα-dependent hypothalamic estrogen sensing in female mice.

机构信息

Institute of Biochemistry and Center for Molecular Biosciences Innsbruck, University of Innsbruck, Innsbruck, 6020, Austria.

Section of Investigative Medicine, Imperial College London, London, United Kingdom.

出版信息

Nat Commun. 2023 May 29;14(1):3076. doi: 10.1038/s41467-023-38618-y.

Abstract

Coupling the release of pituitary hormones to the developmental stage of the oocyte is essential for female fertility. It requires estrogen to restrain kisspeptin (KISS1)-neuron pulsatility in the arcuate hypothalamic nucleus, while also exerting a surge-like effect on KISS1-neuron activity in the AVPV hypothalamic nucleus. However, a mechanistic basis for this region-specific effect has remained elusive. Our genomic analysis in female mice demonstrate that some processes, such as restraint of KISS1-neuron activity in the arcuate nucleus, may be explained by region-specific estrogen receptor alpha (ERα) DNA binding at gene regulatory regions. Furthermore, we find that the Kiss1-locus is uniquely regulated in these hypothalamic nuclei, and that the nuclear receptor co-repressor NR0B1 (DAX1) restrains its transcription specifically in the arcuate nucleus. These studies provide mechanistic insight into how ERα may control the KISS1-neuron, and Kiss1 gene expression, to couple gonadotropin release to the developmental stage of the oocyte.

摘要

将垂体激素的释放与卵母细胞的发育阶段偶联对于女性生育能力至关重要。这需要雌激素来抑制弓状核中的 kisspeptin(KISS1)神经元的脉冲活动,同时对下丘脑视前核中的 KISS1 神经元活动施加类激增效应。然而,这种区域特异性效应的机制基础仍然难以捉摸。我们对雌性小鼠的基因组分析表明,一些过程,如抑制弓状核中的 KISS1 神经元活性,可能可以通过基因调控区域的雌激素受体 α(ERα)的区域特异性 DNA 结合来解释。此外,我们发现 Kiss1 基因座在这些下丘脑核中受到独特的调控,核受体共抑制因子 NR0B1(DAX1)特异性地在弓状核中抑制其转录。这些研究为 ERα 如何控制 KISS1 神经元和 Kiss1 基因表达以将促性腺激素释放与卵母细胞的发育阶段偶联提供了机制上的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5651/10227040/a39242e6b35d/41467_2023_38618_Fig1_HTML.jpg

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