Department of Organ Anatomy, Tohoku University Graduate School of Medicine, Sendai, 980-8575, Japan.
Department of Organ Anatomy, Tohoku University Graduate School of Medicine, Sendai, 980-8575, Japan.
Biochem Biophys Res Commun. 2020 Sep 10;530(1):329-335. doi: 10.1016/j.bbrc.2020.07.090. Epub 2020 Aug 7.
The onset establishment and maintenance of gonadotropin-releasing hormone (GnRH) secretion is an important phenomenon regulating pubertal development and reproduction. GnRH neurons as well as other neurons in the hypothalamus have high-energy demands and require a constant energy supply from their mitochondria machinery to maintain active functioning. However, the involvement of mitochondrial function in GnRH neurons is still unclear. In this study, we examined the role of NADH Dehydrogenase (Ubiquinone) Fe-S protein 4 (Ndufs4), a member of the mitochondrial complex 1, on GnRH neurons using Ndufs4-KO mice and Ndufs4-KO GT1-7 cells. Ndufs4 was highly expressed in GnRH neurons in the medial preoptic area (MPOA) and NPY/AgRP and POMC neurons in the arcuate (ARC) nucleus in WT mice. Conversely, there was a significant decrease in GnRH expression in MPOA and median eminence of Ndufs4-KO mice, followed by impaired peripheral endocrine system. In Ndufs4-KO GT1-7 cells, Gnrh1 expression was significantly decreased with or without stimulation with either kisspeptin or NGF, whereas, stimulation significantly increased Gnrh1 expression in control cells. In contrast, there was no difference in cell signaling activity including ERK and CREB as well as the expression of GPR54, TrkA and p75, suggesting that Ndufs4 is involved in the transcriptional regulation system for GnRH production. These findings may be useful in understanding the mitochondrial function in GnRH neuron.
促性腺激素释放激素(GnRH)分泌的起始建立和维持是调节青春期发育和生殖的重要现象。GnRH 神经元以及下丘脑的其他神经元都有很高的能量需求,需要其线粒体机器不断供应能量以维持其活跃的功能。然而,线粒体功能在 GnRH 神经元中的参与仍不清楚。在这项研究中,我们使用 Ndufs4-KO 小鼠和 Ndufs4-KO GT1-7 细胞,研究了线粒体复合物 1 的成员 NADH 脱氢酶(泛醌)Fe-S 蛋白 4(Ndufs4)对 GnRH 神经元的作用。Ndufs4 在 WT 小鼠的中脑前区(MPOA)和弓状核(ARC)的 NPY/AgRP 和 POMC 神经元中高度表达。相反,在 Ndufs4-KO 小鼠中,MPOA 和正中隆起的 GnRH 表达明显减少,随后外周内分泌系统受损。在 Ndufs4-KO GT1-7 细胞中,Gnrh1 表达在没有或有 kisspeptin 或 NGF 刺激的情况下显著降低,而在对照细胞中,刺激显著增加了 Gnrh1 表达。相比之下,ERK 和 CREB 等细胞信号活性以及 GPR54、TrkA 和 p75 的表达没有差异,这表明 Ndufs4 参与 GnRH 产生的转录调节系统。这些发现可能有助于理解 GnRH 神经元中的线粒体功能。