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雌二醇对厌食性和食欲性下丘脑弓状核神经元的不同作用。

Diverse actions of estradiol on anorexigenic and orexigenic hypothalamic arcuate neurons.

机构信息

Department of Physiology and Pharmacology, Oregon Health & Science University, Portland, OR 97239, USA.

Department of Physiology and Pharmacology, Oregon Health & Science University, Portland, OR 97239, USA; Department of Anesthesiology and Perioperative Medicine, Oregon Health & Science University, Portland, OR 97239, USA; Division of Neuroscience, Oregon Regional Primate Research Center, Oregon Health & Science University, Beaverton, OR 97006, USA.

出版信息

Horm Behav. 2018 Aug;104:146-155. doi: 10.1016/j.yhbeh.2018.04.001. Epub 2018 Apr 21.

Abstract

Contribution to Special Issue on Fast effects of steroids. There is now compelling evidence for membrane-associated estrogen receptors in hypothalamic neurons that are critical for the hypothalamic control of homeostatic functions. It has been known for some time that estradiol (E2) can rapidly alter hypothalamic neuronal activity within seconds, indicating that some cellular effects can occur via membrane initiated events. However, our understanding of how E2 signals via membrane-associated receptors and how these signals impact physiological functions is only just emerging. Thus, E2 can affect second messenger systems including calcium mobilization and a plethora of kinases to alter cell excitability and even gene transcription in hypothalamic neurons. One population of hypothalamic neurons, the anorexigenic proopiomelanocortin (POMC) neurons, has long been considered to be a target of E2's actions based on gene (Pomc) expression studies. However, we now know that E2 can rapidly alter POMC neuronal activity within seconds and activate several intracellular signaling cascades that ultimately affect gene expression, actions which are critical for maintaining sensitivity to insulin in metabolically stressed states. E2 also affects the orexigenic Neuropeptide Y/Agouti-related Peptide (NPY/AgRP) neurons in similarly rapid but antagonistic manner. Therefore, this review will summarize our current state of knowledge of how E2 signals via rapid membrane-initiated and intracellular signaling cascades in POMC and NPY/AgRP neurons to regulate energy homeostasis.

摘要

为“类固醇快速作用”特刊做出的贡献。现在有确凿的证据表明,在调节稳态功能的下丘脑神经元中存在膜相关的雌激素受体。众所周知,雌二醇(E2)可以在几秒钟内快速改变下丘脑神经元的活动,这表明某些细胞效应可以通过膜起始事件发生。然而,我们对 E2 通过膜相关受体发出信号的方式以及这些信号如何影响生理功能的理解才刚刚开始。因此,E2 可以影响包括钙动员和大量激酶在内的第二信使系统,从而改变下丘脑神经元的细胞兴奋性,甚至基因转录。一直以来,下丘脑的一种神经元群,即厌食性促黑皮质素原(POMC)神经元,被认为是 E2 作用的靶点,这是基于基因(Pomc)表达研究得出的结论。然而,我们现在知道,E2 可以在几秒钟内快速改变 POMC 神经元的活动,并激活几种细胞内信号级联反应,最终影响基因表达,这些反应对于维持代谢应激状态下对胰岛素的敏感性至关重要。E2 也以类似的快速但拮抗的方式影响食欲性神经肽 Y/Agouti 相关肽(NPY/AgRP)神经元。因此,本综述将总结我们目前对 E2 通过快速的膜起始和细胞内信号级联在 POMC 和 NPY/AgRP 神经元中发出信号以调节能量稳态的知识状态。

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