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Neurokinin B signalling in the human reproductive axis.

机译:人类生殖轴中的神经激肽B信号传导。

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Recent human genetic studies have established that neurokinin B (NKB) signalling via the neurokinin 3 receptor (NK3R) is required for normal developmental activation of pulsatile GnRH secretion from the hypothalamus. As increasing numbers of patients with loss-of-function mutations have been described, evidence has emerged that peripheral NKB is not necessary for normal pregnancy despite high placental expression and high plasma levels of NKB in late gestation. Nevertheless many key questions about the role of NKB in the function of the GnRH pulse generator remain to be answered. Differences in requirement for NKB/NK3R for hypothalamic-pituitary-gonadal (HPG) maturation amongst different species, and their varied responses to stimulation with NKB represent a challenge for higher resolution studies. Neuroanatomical investigation has, however, identified key "KNDy" (Kisspeptin, Neurokinin B, Dynorphin) arcuate neurones that are conserved amongst different species and that are intimately connected both to each other and to the GnRH nerve termini. Several lines of evidence suggest that these may be the core of the GnRH pulse generator, and with experimental tools now in place in humans, monkeys and other experimental animals to pursue the function of these interconnected neurones and the functional hierarchy of their neuroendocrine inputs, understanding of the enigmatic GnRH pulse generator may at last be within reach.
机译:最近的人类遗传研究已经确定,通过神经激肽3受体(NK3R)发出的神经激肽B(NKB)信号是下丘脑搏动性GnRH分泌物正常发育激活所必需的。随着功能丧失突变患者的数量不断增加,已经有证据表明,尽管妊娠后期胎盘表达高且血浆中NKB水平高,正常妊娠并不需要外周NKB。但是,关于NKB在GnRH脉冲发生器功能中的作用的许多关键问题仍有待解答。不同物种下丘脑-垂体-性腺(HPG)成熟所需的NKB / NK3R的差异,以及它们对NKB刺激的不同反应,对更高分辨率的研究提出了挑战。然而,神经解剖学研究已经确定了关键的“ KNDy”(吻肽素,神经激肽B,强啡肽)弓形神经元,这些弓形神经元在不同物种之间是保守的,并且彼此之间以及与GnRH神经末端都紧密相连。有几条证据表明,这些可能是GnRH脉冲发生器的核心,并且在人类,猴子和其他实验动物中已经有了实验工具,以追踪这些相互连接的神经元的功能及其神经内分泌输入的功能层次,从而了解神秘的GnRH脉冲发生器的输出信号可能最终可以到达。

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