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首页> 外文期刊>Endocrinology >Physiological Roles of Gonadotropin-Inhibitory Hormone Signaling in the Control of Mammalian Reproductive Axis: Studies in the NPFF1 Receptor Null Mouse
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Physiological Roles of Gonadotropin-Inhibitory Hormone Signaling in the Control of Mammalian Reproductive Axis: Studies in the NPFF1 Receptor Null Mouse

机译:促性腺激素抑制激素信号传导在哺乳动物生殖轴控制中的生理作用:在NPFF1受体空小鼠的研究。

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摘要

RF-amide-related peptide-3 (RFRP-3), the mammalian ortholog of the avian gonadotropin-inhibiting hormone (GnIH), operates via the NPFF1 receptor (NPFF1R) to repress the reproductive axis, therefore acting as counterpart of the excitatory RF-amide peptide, kisspeptin (ligand of Gpr54). In addition, RFRP-3 modulates feeding and might contribute to the integrative control of energy homeostasis and reproduction. Yet, the experimental evidence supporting these putative functions is mostly indirect, and the physiological roles of RFRP-3 remain debatable and obscured by the lack of proper analytical tools and models. To circumvent these limitations, we characterize herein the first mouse line with constitutive inactivation of NPFF1R. Ablation of NPFF1R did not compromise fertility; rather, litters from NPFF1R null mice were larger than those from wild-type animals. Pubertal timing was not altered in NPFF1R deficient mice; yet, pre-pubertal knockout (KO) males displayed elevated LH levels, which normalized after puberty. Adult NPFF1R null male mice showed increased Kiss1 expression in the hypothalamic arcuate nucleus, higher serum FSH levels, and enhanced LH responses to GnRH. However, genetic elimination of NPFF1R was unable to reverse the state of hypogonadism caused by the lack of kisspeptin signaling, as revealed by double NPFF1R/Gpr54 KO mice. NPFF1R null mice displayed altered feedback responses to gonadal hormone withdrawal. In addition, metabolic challenges causing gonadotropin suppression, such as short-term fasting and high-fat diet, were less effective in dampening LH secretion in NPFF1R-deficient male mice, suggesting that absence of this inhibitory pathway partially prevented gonadotropin suppression by metabolic stress. Our data are the first to document the impact of elimination of GnIH signaling on reproductive parameters and their modulation by metabolic challenges. Whereas, in keeping with its inhibitory role, the NPFF1R pathway seems dispensable for preserved puberty and fertility, our results surface different alterations due to the lack of GnIH signaling that prominently include changes in the sensitivity to fasting- and obesity-associated hypogonadotropism.
机译:RF-酰胺相关肽3(RFRP-3)是禽促性腺激素抑制激素(GnIH)的哺乳动物直系同源物,通过NPFF1受体(NPFF1R)来抑制生殖轴,因此与兴奋性RF对应-酰胺肽,kisseptin(Gpr54的配体)。此外,RFRP-3调节饲料,可能有助于能量稳态和繁殖的综合控制。然而,支持这些假定功能的实验证据大部分是间接的,并且由于缺乏适当的分析工具和模型,RFRP-3的生理作用仍然存在争议。为了规避这些限制,我们在本文中将第一个小鼠品系定性为NPFF1R失活。 NPFF1R的消融并不影响生育能力。相反,来自NPFF1R无效小鼠的垫料比来自野生型动物的垫料更大。 NPFF1R缺陷小鼠的青春期时机没有改变;然而,青春期前淘汰赛(KO)男性表现出升高的LH水平,在青春期后恢复正常。成年NPFF1R无效的雄性小鼠在下丘脑弓状核中显示Kiss1表达增加,血清FSH水平更高,并且LH对GnRH的反应增强。然而,如双NPFF1R / Gpr54 KO小鼠所揭示的,NPFF1R的基因消除无法逆转由于缺少kisepteptin信号导致的性腺功能减退状态。 NPFF1R空小鼠表现出对性腺激素戒断的反馈反应改变。此外,引起促性腺激素抑制的代谢挑战(如短期禁食和高脂饮食)在抑制NPFF1R缺乏的雄性小鼠的LH分泌方面效果较差,这表明该抑制途径的缺失部分阻止了代谢应激对促性腺激素的抑制。我们的数据是第一个记录消除GnIH信号传导对生殖参数及其通过代谢挑战进行调控的影响的数据。鉴于其抑制作用,NPFF1R途径似乎对于保持青春期和生育是必不可少的,我们的结果由于缺乏GnIH信号而出现了不同的变化,GnIH信号的缺乏主要包括对与禁食和肥胖相关的性腺功能减退敏感性的改变。

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