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瘦素而非雌二醇信号在 PACAP 神经元中调节青春期启动。

Leptin, but not Estradiol, Signaling in PACAP Neurons Modulates Puberty Onset.

机构信息

Centre for Neuroendocrinology and Department of Anatomy, University of Otago School of Biomedical Sciences, Dunedin 9054, New Zealand.

出版信息

Endocrinology. 2023 Jun 26;164(8). doi: 10.1210/endocr/bqad097.

Abstract

The adipose-derived hormone leptin critically modulates reproductive function, such that its absence results in hypothalamic hypogonadism. Pituitary adenylate cyclase-activating polypeptide (PACAP)-expressing neurons are potential mediators of leptin's action on the neuroendocrine reproductive axis because they are leptin-sensitive and involved in both feeding behavior and reproductive function. In the complete absence of PACAP, male and female mice exhibit metabolic and reproductive abnormalities, yet there is some sexual dimorphism in the reproductive impairments. We tested whether PACAP neurons play a critical and/or sufficient role in mediating leptin's effects on reproductive function by generating PACAP-specific leptin receptor (LepR) knockout and rescue mice, respectively. We also generated PACAP-specific estrogen receptor alpha knockout mice to determine whether estradiol-dependent regulation of PACAP was critically involved in the control of reproductive function and whether it contributed to the sexually dimorphic effects of PACAP. We showed that LepR signaling in PACAP neurons is critically involved in the timing of female, but not male, puberty onset, but not fertility. Rescuing LepR-PACAP signaling in otherwise LepR-deficient mice was unable to rescue the reproductive deficits observed in LepR null mice but led to a marginal improvement in body weight and adiposity in females. Finally, PACAP-specific estrogen receptor alpha knockout did not lead to any changes in body weight or puberty onset compared with control mice. These data highlight that PACAP is a critical mediator of some of leptin's, but not estradiol's, influence on puberty onset in females, but is not critically involved in relaying leptin's effects in males or in adult females.

摘要

脂肪组织来源的激素瘦素对生殖功能具有关键的调节作用,其缺失会导致下丘脑性性腺功能减退。脑垂体腺苷酸环化酶激活肽(PACAP)表达神经元可能是瘦素对神经内分泌生殖轴作用的潜在介质,因为它们对瘦素有反应,并且参与摄食行为和生殖功能。在完全缺乏 PACAP 的情况下,雄性和雌性小鼠表现出代谢和生殖异常,但生殖损伤存在一定的性别二态性。我们通过分别生成 PACAP 特异性瘦素受体(LepR)敲除和挽救小鼠,测试了 PACAP 神经元是否在介导瘦素对生殖功能的影响方面发挥关键和/或充分的作用。我们还生成了 PACAP 特异性雌激素受体α敲除小鼠,以确定雌激素依赖性的 PACAP 调节是否在生殖功能的控制中具有关键作用,以及它是否导致了 PACAP 的性别二态性效应。我们发现,PACAP 神经元中的 LepR 信号在雌性而非雄性青春期启动的时间上具有关键作用,但对生育能力没有影响。在其他 LepR 缺失的小鼠中挽救 LepR-PACAP 信号无法挽救 LepR 缺失小鼠中观察到的生殖缺陷,但导致雌性体重和肥胖度略有改善。最后,与对照小鼠相比,PACAP 特异性雌激素受体α敲除小鼠的体重或青春期启动没有任何变化。这些数据突出表明,PACAP 是瘦素对雌性青春期启动的一些影响的关键介质,但不是雌激素的影响,但其在雄性或成年雌性中传递瘦素的作用并不关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cd5/10341598/dce5f9490d85/bqad097f1.jpg

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