The role of ovarian hormone dynamics in metabolic phenotype and gene expression in female mice

IF 2.5 3区 医学 Q2 BEHAVIORAL SCIENCES
Laila Ouldibbat, Devin Rocks, Branden Sampson, Marija Kundakovic
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引用次数: 0

Abstract

Ovarian hormones, particularly estradiol, play an important role in the regulation of metabolic function including in food intake, thermogenesis, activity, fat distribution, and overall weight management. While it is known that weight and food intake follow cyclical patterns across the rodent estrous cycle, the majority of metabolic studies still focus on ovariectomized rodent models and estrogen replacement. Here we provide a comprehensive metabolic profiling of female mice under different ovarian hormone states, from having naturally-cycling ovarian hormone levels to complete ovarian hormone depletion and “estrous cycle-like” estrogen replacement (0.2 or 1 μg estradiol benzoate every 4 days). Every domain of metabolic function that we examined including activity levels, food intake, and body composition was affected by ovariectomy and contributed to >30 % weight gain and nearly two-fold increase in fat mass in ovarian hormone-depleted mice over the 12-week period. By combining physiological and hormone replacement paradigms, we show that cyclical estrogen levels are necessary and sufficient to maintain optimal body weight and fat mass. We show that the hypothalamic expression of genes encoding estrogen receptor alpha (Esr1) and neuropeptides involved in feeding behavior (Agrp, Pomc) changes across the cycle and with ovariectomy, and is partially “rescued” by cyclical estrogen treatment. The drastic fat mass changes following ovariectomy are accompanied by changes in adipose tissue gene expression, including a decreased responsiveness to estrogens due to Esr1 down-regulation. Our study highlights the importance of understanding the dynamic regulation of metabolic function by ovarian hormones and calls for more naturalistic and higher-resolution approaches to studying the molecular basis of ovarian hormone action.
卵巢激素动态在雌性小鼠代谢表型和基因表达中的作用
卵巢激素,尤其是雌二醇,在调节代谢功能中发挥重要作用,包括食物摄入、产热、活动、脂肪分布和整体体重管理。虽然已知体重和食物摄入在啮齿动物的发情周期中遵循周期性模式,但大多数代谢研究仍然集中在去卵巢的啮齿动物模型和雌激素替代上。在这里,我们提供了不同卵巢激素状态下雌性小鼠的全面代谢谱,从卵巢激素自然循环水平到卵巢激素完全耗尽和“发情周期样”雌激素替代(0.2或1 μg苯甲酸雌二醇每4天)。我们检查的代谢功能的每一个领域,包括活动水平、食物摄入和身体组成,都受到卵巢切除术的影响,在12周的时间里,卵巢激素枯竭的小鼠体重增加了30%,脂肪量增加了近两倍。通过结合生理和激素替代范式,我们表明周期性雌激素水平对于维持最佳体重和脂肪量是必要和充分的。我们发现下丘脑编码雌激素受体α (Esr1)和参与摄食行为的神经肽(Agrp, Pomc)的基因表达在整个周期和卵巢切除术中发生变化,并通过周期性雌激素治疗部分“拯救”。卵巢切除术后脂肪量的剧烈变化伴随着脂肪组织基因表达的变化,包括由于Esr1下调而导致对雌激素的反应性降低。我们的研究强调了了解卵巢激素对代谢功能的动态调节的重要性,并呼吁采用更自然和更高分辨率的方法来研究卵巢激素作用的分子基础。
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来源期刊
Hormones and Behavior
Hormones and Behavior 医学-行为科学
CiteScore
6.70
自引率
8.60%
发文量
139
审稿时长
91 days
期刊介绍: Hormones and Behavior publishes original research articles, reviews and special issues concerning hormone-brain-behavior relationships, broadly defined. The journal''s scope ranges from laboratory and field studies concerning neuroendocrine as well as endocrine mechanisms controlling the development or adult expression of behavior to studies concerning the environmental control and evolutionary significance of hormone-behavior relationships. The journal welcomes studies conducted on species ranging from invertebrates to mammals, including humans.
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