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首页> 外文期刊>The journal of clinical investigation >Divergent roles of growth factors in the GnRH regulation of puberty in mice
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Divergent roles of growth factors in the GnRH regulation of puberty in mice

机译:生长因子在小鼠GnRH调节青春期中的不同作用

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Pubertal onset, initiated by pulsatile gonadotropin-releasing hormone (GnRH), only occurs in a favorable, anabolic hormonal milieu. Anabolic factors that may signal nutritional status to the hypothalamus include the growth factors insulin and IGF-1. It is unclear which hypothalamic neuronal subpopulation these factors affect to ultimately regulate GnRH neuron function in puberty and reproduction. We examined the direct role of the GnRH neuron in growth factor regulation of reproduction using the Cre/lox system. Mice with the IR or IGF-1R deleted specifically in GnRH neurons were generated. Male and female mice with the IR deleted in GnRH neurons displayed normal pubertal timing and fertility, but male and female mice with the IGF-1R deleted in GnRH neurons experienced delayed pubertal development with normal fertility. With IGF-1 administration, puberty was advanced in control females, but not in females with the IGF-1R deleted in GnRH neurons, in control males, or in knockout males. These mice exhibited developmental differences in GnRH neuronal morphology but normal number and distribution of neurons. These studies define the role of IGF-1R signaling in the coordination of somatic development with reproductive maturation and provide insight into the mechanisms regulating pubertal timing in anabolic states.
机译:由搏动性促性腺激素释放激素(GnRH)引发的青春期发作仅发生在有利的合成代谢激素环境中。可能指示下丘脑营养状态的合成代谢因子包括生长因子胰岛素和IGF-1。尚不清楚这些因素影响哪个下丘脑神经元亚群,最终调节青春期和生殖期的GnRH神经元功能。我们使用Cre / lox系统检查了GnRH神经元在生殖生长因子调控繁殖中的直接作用。产生IR或IGF-1R在GnRH神经元中特异性缺失的小鼠。在GnRH神经元中IR缺失的雄性和雌性小鼠表现出正常的青春期时机和受精能力,但是在GnRH神经元中IGF-1R缺失的雌性和雌性小鼠的青春期发育受到正常生育力的延迟。使用IGF-1时,对照女性的青春期进展,但在GnRH神经元,对照男性或基因敲除的男性中,IGF-1R缺失的女性青春期则没有进展。这些小鼠表现出GnRH神经元形态的发育差异,但神经元的数量和分布却正常。这些研究定义了IGF-1R信号传导在体细胞发育与生殖成熟的协调中的作用,并提供了在合成代谢状态下调节青春期时机的机制的见解。

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