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Neuroendocrine control by kisspeptins:role in metabolic regulation of fertility

机译:Kisspeptins对神经内分泌的控制:在生育代谢调节中的作用

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The neurohormonal control of reproduction involves a hierarchical network of central and peripheral signals in the hypothalamic-pituitary-gonadal (HPG) axis. Development and function of this neuroendocrine system is the result of a lifelong delicate balance between endogenous regulators and environmental cues, including nutritional and metabolic factors. Kisspeptins are the peptide products of KISS1, which operate via the G-protein-coupled receptor GPR54 (also known as KisslR). These peptides have emerged as essential upstream regulators of neurons secreting gonadotropin-releasing hormone (GnRH), the major hypothalamic node for the stimulatory control of the HPG axis. They are potent elicitors of gonadotropin secretion in various species and physiological settings. Moreover, Kissl neurons in the hypothalamus participate in crucial features of reproductive maturation and function, such as brain-level sex differentiation, puberty onset and the neuroendocrine regulation of gonadotropin secretion and ovulation. Cotransmitters of Kissl neurons, such as neurokinin B, with roles in controlling the HPG axis have been identified by genetic, neuroanatomical and physiological studies. In addition, a putative role has been proposed for Kissl neurons in transmitting metabolic information to GnRH neurons, although the precise mechanisms are as yet unclear. In this Review, we present the major reproductive features of kisspeptins, especially their interplay with neurokinin B and potential roles in the metabolic control of puberty and fertility, and suggest new avenues for research.
机译:生殖的神经激素控制涉及下丘脑-垂体-性腺(HPG)轴的中央和周边信号的分层网络。这种神经内分泌系统的发育和功能是内源性调节剂与环境提示(包括营养和代谢因子)之间终生细腻平衡的结果。 Kisspeptins是KISS1的肽产物,可通过G蛋白偶联受体GPR54(也称为KisslR)起作用。这些肽已成为分泌促性腺激素释放激素(GnRH)(刺激HPG轴的主要下丘脑结点)的神经元的重要上游调节剂。它们是在各种物种和生理环境中促性腺激素分泌的有效引发剂。此外,下丘脑中的Kissl神经元参与生殖成熟和功能的关键特征,例如脑水平的性别分化,青春期发作以及促性腺激素分泌和排卵的神经内分泌调节。遗传,神经解剖学和生理学研究已经确定了在控制HPG轴中起作用的Kissl神经元的共递质,例如神经激肽B。此外,尽管确切的机制尚不清楚,但已提出了在传递代谢信息至GnRH神经元中对Kissl神经元的推定作用。在这篇综述中,我们介绍了kisepteptin的主要生殖特征,特别是它们与神经激肽B的相互作用以及在青春期和生育力代谢控制中的潜在作用,并提出了新的研究途径。

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