Department of Biological Sciences, Kent State University, Kent, OH 44242, USA.
Brain Health Research Institute, Kent State University, Kent, OH 44242, USA.
Endocrinology. 2023 Dec 23;165(2). doi: 10.1210/endocr/bqad194.
There is considerable evidence that synchronized activity within a reciprocally connected population of cells in the arcuate nucleus (ARC) coexpressing kisspeptin, neurokinin B (NKB), and dynorphin (KNDy cells) is crucial for the generation of gonadotrophin-releasing hormone (GnRH) pulses in mammals. The initial "KNDy hypothesis" proposed that pulsatile GnRH secretion is elicited by episodic kisspeptin release from KNDy cells following synchronized activation and termination of the population by NKB and dynorphin, respectively. Since then, the role of KNDy cells as a critical component of the pulse generator has been further supported by studies at the single-cell level, demonstrating that the population is both necessary and sufficient for pulsatility. In addition, there have been considerable modifications and expansion of the original hypothesis, including work demonstrating the critical role of glutamate in synchronization of the KNDy cell network, functional interactions with other ARC subpopulations, and the existence of species differences in the role of dynorphin in pulse generation. Here we review these recent changes and discuss how the translation of these findings has led to the development of new therapies for disorders related to pulse generation. We also outline critical gaps in knowledge that are currently limiting the application of KNDy research in the clinic, particularly regarding the role of dynorphin in pulse generation in primates.
有大量证据表明,弓状核(ARC)中表达 kisspeptin、神经激肽 B(NKB)和强啡肽(dynorphin)的相互连接的细胞群体中的同步活动对于哺乳动物促性腺激素释放激素(GnRH)脉冲的产生至关重要。最初的“KNDy 假说”提出,脉冲 GnRH 分泌是由 KNDy 细胞中 kisspeptin 的阵发性释放引起的,这是通过 NKB 和 dynorphin 分别对群体的同步激活和终止引起的。自那时以来,KNDy 细胞作为脉冲发生器的关键组成部分的作用已通过单细胞水平的研究得到进一步支持,这些研究表明该群体对于脉冲发生是必要且充分的。此外,原始假说已经有了相当大的修改和扩展,包括证明谷氨酸在 KNDy 细胞网络同步中的关键作用、与其他 ARC 亚群的功能相互作用以及 dynorphin 在脉冲生成中的作用在物种间存在差异的工作。在这里,我们回顾了这些最新变化,并讨论了这些发现的转化如何导致与脉冲生成相关的疾病的新疗法的发展。我们还概述了目前限制 KNDy 研究在临床应用的关键知识差距,特别是关于 dynorphin 在灵长类动物脉冲生成中的作用。