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靶向敲除 Kisspeptin 细胞中的 PTEN 导致 Kisspeptin 表达和促性腺激素释放呈现脑区和性别特异性效应。

Targeted Deletion of PTEN in Kisspeptin Cells Results in Brain Region- and Sex-Specific Effects on Kisspeptin Expression and Gonadotropin Release.

机构信息

Graduate Program in Neuroscience, Stony Brook University, Stony Brook, NY 11794, USA.

Department of Physiology and Biophysics, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

Int J Mol Sci. 2020 Mar 19;21(6):2107. doi: 10.3390/ijms21062107.

Abstract

Kisspeptin-expressing neurons in the anteroventral periventricular nucleus (AVPV) and the arcuate nucleus (ARC) of the hypothalamus relay hormonal and metabolic information to gonadotropin-releasing hormone neurons, which in turn regulate pituitary and gonadal function. Phosphatase and tensin homolog (PTEN) blocks phosphatidylinositol 3-kinase (PI3K), a signaling pathway utilized by peripheral factors to transmit their signals. However, whether PTEN signaling in kisspeptin neurons helps to integrate peripheral hormonal cues to regulate gonadotropin release is unknown. To address this question, we generated mice with a kisspeptin cell-specific deletion of (Kiss-PTEN KO), and first assessed kisspeptin protein expression and gonadotropin release in these animals. Kiss-PTEN KO mice displayed a profound sex and region-specific kisspeptin neuron hyperthrophy. We detected both kisspeptin neuron hyperthrophy as well as increased kisspeptin fiber densities in the AVPV and ARC of Kiss-PTEN KO females and in the ARC of Kiss-PTEN KO males. Moreover, Kiss-PTEN KO mice showed a reduced gonadotropin release in response to gonadectomy. We also found a hyperactivation of mTOR, a downstream PI3K target and central regulator of cell metabolism, in the AVPV and ARC of Kiss-PTEN KO females but not males. Fasting, known to inhibit hypothalamic kisspeptin expression and luteinizing hormone levels, failed to induce these changes in Kiss-PTEN KO females. We conclude that PTEN signaling regulates kisspeptin protein synthesis in both sexes and that its role as a metabolic signaling molecule in kisspeptin neurons is sex-specific.

摘要

下丘脑前腹内侧核(AVPV)和弓状核(ARC)中的 kisspeptin 表达神经元将激素和代谢信息传递给促性腺激素释放激素神经元,后者反过来调节垂体和性腺功能。磷酸酶和张力蛋白同系物(PTEN)阻断磷脂酰肌醇 3-激酶(PI3K),这是外周因子传递信号所利用的信号通路。然而,kisspeptin 神经元中的 PTEN 信号是否有助于整合外周激素线索来调节促性腺激素释放尚不清楚。为了解决这个问题,我们生成了 kisspeptin 细胞特异性缺失的小鼠(Kiss-PTEN KO),并首先评估了这些动物中的 kisspeptin 蛋白表达和促性腺激素释放。Kiss-PTEN KO 小鼠表现出明显的性别和区域特异性 kisspeptin 神经元肥大。我们在 Kiss-PTEN KO 雌性动物的 AVPV 和 ARC 以及 Kiss-PTEN KO 雄性动物的 ARC 中均检测到 kisspeptin 神经元肥大和 kisspeptin 纤维密度增加。此外,Kiss-PTEN KO 小鼠在去势后表现出促性腺激素释放减少。我们还发现,在 Kiss-PTEN KO 雌性动物的 AVPV 和 ARC 中,mTOR(PI3K 的下游靶标和细胞代谢的中枢调节剂)过度激活,但在雄性动物中没有。禁食已知抑制下丘脑 kisspeptin 表达和黄体生成素水平,但未能在 Kiss-PTEN KO 雌性动物中诱导这些变化。我们得出结论,PTEN 信号调节两性的 kisspeptin 蛋白合成,其作为 kisspeptin 神经元代谢信号分子的作用具有性别特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9cf/7139936/37b32d96a087/ijms-21-02107-g001.jpg

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