Estrogen receptor-α signaling in tanycytes lies at the crossroads of fertility and metabolism

IF 10.8 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM Metabolism: clinical and experimental Pub Date : 2024-07-15 DOI:10.1016/j.metabol.2024.155976
Daniela Fernandois , Mariam Rusidzé , Helge Mueller-Fielitz , Florent Sauve , Eleonora Deligia , Mauro S.B. Silva , Florence Evrard , Aurelio Franco-García , Daniele Mazur , Ines Martinez-Corral , Nathalie Jouy , S. Rasika , Claude-Alain Maurage , Paolo Giacobini , Ruben Nogueiras , Benedicte Dehouck , Markus Schwaninger , Francoise Lenfant , Vincent Prevot
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Abstract

Background

Estrogen secretion by the ovaries regulates the hypothalamic-pituitary-gonadal axis during the reproductive cycle, influencing gonadotropin-releasing hormone (GnRH) and luteinizing hormone (LH) secretion, and also plays a role in regulating metabolism. Here, we establish that hypothalamic tanycytes—specialized glia lining the floor and walls of the third ventricle—integrate estrogenic feedback signals from the gonads and couple reproduction with metabolism by relaying this information to orexigenic neuropeptide Y (NPY) neurons.

Methods

Using mouse models, including mice floxed for Esr1 (encoding estrogen receptor alpha, ERα) and those with Cre-dependent expression of designer receptors exclusively activated by designer drugs (DREADDs), along with viral-mediated, pharmacological and indirect calorimetric approaches, we evaluated the role of tanycytes and tanycytic estrogen signaling in pulsatile LH secretion, cFos expression in NPY neurons, estrous cyclicity, body-weight changes and metabolic parameters in adult females.

Results

In ovariectomized mice, chemogenetic activation of tanycytes significantly reduced LH pulsatile release, mimicking the effects of direct NPY neuron activation. In intact mice, tanycytes were crucial for the estrogen-mediated control of GnRH/LH release, with tanycytic ERα activation suppressing fasting-induced NPY neuron activation. Selective knockout of Esr1 in tanycytes altered estrous cyclicity and fertility in female mice and affected estrogen's ability to inhibit refeeding in fasting mice. The absence of ERα signaling in tanycytes increased Npy transcripts and body weight in intact mice and prevented the estrogen-mediated decrease in food intake as well as increase in energy expenditure and fatty acid oxidation in ovariectomized mice.

Conclusions

Our findings underscore the pivotal role of tanycytes in the neuroendocrine coupling of reproduction and metabolism, with potential implications for its age-related deregulation after menopause.

Significance statement

Our investigation reveals that tanycytes, specialized glial cells in the brain, are key interpreters of estrogen signals for orexigenic NPY neurons in the hypothalamus. Disrupting tanycytic estrogen receptors not only alters fertility in female mice but also impairs the ability of estrogens to suppress appetite. This work thus sheds light on the critical role played by tanycytes in bridging the hormonal regulation of cyclic reproductive function and appetite/feeding behavior. This understanding may have potential implications for age-related metabolic deregulation after menopause.

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榕树细胞中的雌激素受体-α信号处于生育和新陈代谢的十字路口。
背景:卵巢分泌的雌激素在生殖周期中调节下丘脑-垂体-性腺轴,影响促性腺激素释放激素(GnRH)和黄体生成素(LH)的分泌,并在调节新陈代谢中发挥作用。在这里,我们证实了下丘脑澹细胞--内衬第三脑室底和壁的特化胶质细胞--整合了来自性腺的雌激素反馈信号,并通过将这一信息传递给促厌神经肽 Y(NPY)神经元而将生殖与新陈代谢联系起来:方法:我们利用小鼠模型,包括Esr1(编码雌激素受体α,ERα)基因缺失的小鼠和Cre依赖性表达由设计药物(DREADDs)专门激活的设计受体的小鼠,以及病毒学、药理学和间接量热法,评估了澹细胞和澹细胞雌激素信号在成年雌性小鼠的脉冲性LH分泌、NPY神经元中的cFos表达、发情周期、体重变化和代谢参数中的作用:结果:在卵巢切除的小鼠中,澹红细胞的化学激活显著减少了LH的脉冲式释放,模拟了直接激活NPY神经元的效果。在完整的小鼠中,澹细胞对雌激素介导的GnRH/LH释放控制至关重要,澹细胞ERα激活可抑制空腹诱导的NPY神经元激活。选择性敲除榕树细胞中的 Esr1 会改变雌性小鼠的发情周期和生育能力,并影响雌激素抑制禁食小鼠再摄食的能力。澹细胞中ERα信号的缺失增加了完整小鼠的Npy转录本和体重,并阻止了雌激素介导的食物摄入量的减少以及卵巢切除小鼠能量消耗和脂肪酸氧化的增加:我们的发现强调了澹红细胞在生殖和新陈代谢的神经内分泌耦合中的关键作用,并对其在绝经后与年龄相关的失调具有潜在影响:我们的研究发现,澹红细胞是大脑中特化的神经胶质细胞,是下丘脑中雌激素信号的关键解释器,可作用于促性腺激素神经元(orexigenic NPY neurons)。破坏澹红细胞雌激素受体不仅会改变雌性小鼠的生育能力,还会削弱雌激素抑制食欲的能力。因此,这项研究揭示了澹红细胞在周期性生殖功能和食欲/进食行为的激素调控中发挥的关键作用。这一认识可能对更年期后与年龄有关的代谢失调有潜在影响。
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来源期刊
Metabolism: clinical and experimental
Metabolism: clinical and experimental 医学-内分泌学与代谢
CiteScore
18.90
自引率
3.10%
发文量
310
审稿时长
16 days
期刊介绍: Metabolism upholds research excellence by disseminating high-quality original research, reviews, editorials, and commentaries covering all facets of human metabolism. Consideration for publication in Metabolism extends to studies in humans, animal, and cellular models, with a particular emphasis on work demonstrating strong translational potential. The journal addresses a range of topics, including: - Energy Expenditure and Obesity - Metabolic Syndrome, Prediabetes, and Diabetes - Nutrition, Exercise, and the Environment - Genetics and Genomics, Proteomics, and Metabolomics - Carbohydrate, Lipid, and Protein Metabolism - Endocrinology and Hypertension - Mineral and Bone Metabolism - Cardiovascular Diseases and Malignancies - Inflammation in metabolism and immunometabolism
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