首页> 美国卫生研究院文献>other >Role of Dorsal Vagal Complex A2 Noradrenergic Neurons in Hindbrain Glucoprivic Inhibition of the Luteinizing Hormone Surge in the Steroid-Primed Ovariectomized Female Rat: Effects of 5-Thioglucose on A2 Functional Biomarker and AMPK Activity
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Role of Dorsal Vagal Complex A2 Noradrenergic Neurons in Hindbrain Glucoprivic Inhibition of the Luteinizing Hormone Surge in the Steroid-Primed Ovariectomized Female Rat: Effects of 5-Thioglucose on A2 Functional Biomarker and AMPK Activity

机译:背侧迷走神经复合体A2去甲肾上腺素能神经元在以激素为主的去卵巢雌性大鼠的促黄体生成过程中对促黄体生成激素的抑制作用:5-硫代葡萄糖对A2功能性生物标志物和AMPK活性的影响。

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摘要

Neuro-glucostasis is required for normal expression of the steroid positive-feedback - induced preovulatory pituitary luteinizing hormone (LH) surge, a critical element of female reproduction. Glucoprivic signals from the caudal hindbrain restrain this surge, but the cellular source of this stimulus is unclear. Norepinephrine (NE) exerts well-defined stimulatory effects on the reproductive neuroendocrine axis. Our studies show that medullary A2 noradrenergic neurons are both estrogen- and glucoprivic-sensitive. Here, we investigated the premise that the LH surge is inhibited by A2 cell reactivity to hindbrain glucopenia and diminished preoptic NE neurotransmission. Estradiol- and progesterone-primed ovariectomized (OVX) female rats were injected into the caudal fourth ventricle (CV4) with the glucose anti-metabolite, 5-thioglucose (5TG) or saline (SAL) prior to onset of the LH surge. Pretreatment by intra-CV4 delivery of the selective catecholamine neurotoxin, 6-OHDA, attenuated LH output, but prevented inhibition by 5TG. 5TG modified patterns of steroid feedback-associated Fos staining of A2, but not other medullary catecholamine cell groups. Intra-preoptic administration of the alpha1-adrenergic receptor agonist, methoxamine, elicited site-specific reversal of hindbrain glucoprivic suppression of gonadotropin-releasing hormone (GnRH) neuron Fos labeling and LH release. Western blotting of laser-microdissected A2 neurons revealed glucoprivic stimulation of Fos, but inhibition of the catecholamine synthetic enzyme, dopamine-β-hydroxylase; 5TG also diminished A2 estrogen receptor (ER)-α and progesterone receptor profiles, but augmented ER-β protein. Intriguingly, A2 AMPK activity was decreased in 5TG-treated rats, despite down-regulation of GLUT3 and no change in MCT2 protein expression. Rostral preoptic GnRH neurons also exhibited decreased AMPK activation simultaneous with apparent reduction of neuropeptide signaling to the pituitary. The present studies demonstrate that hindbrain glucoprivation inhibits the LH surge, in part, by reducing preoptic noradrenergic input, and furthermore implicate A2 neurons as a source of this altered signal. Results also suggest that AMPK sensor deactivation does not supersede the impact of pharmacological inhibition of glucose catabolism on A2 cell function nor afferent signaling of hindbrain glucopenia on GnRH neurons. Further studies are needed to determine if decreased AMPK activation in these cell populations reflect compensatory gain in positive energy balance and/or direct effects of estrogen on AMPK.
机译:糖皮质激素正反馈引起的正常排卵所需要的神经葡萄糖停滞-引起排卵前垂体促黄体生成激素(LH)激增,这是女性生殖的关键因素。来自尾部后脑的糖皮质激素信号抑制了这种激增,但是这种刺激的细胞来源尚不清楚。去甲肾上腺素(NE)对生殖神经内分泌轴发挥明确的刺激作用。我们的研究表明,髓质A2去甲肾上腺素能神经元对雌激素和葡萄糖敏感。在这里,我们调查的前提是,LH激增被A2细胞对后脑糖原减少的反应性抑制,并减少了视前NE神经传递。在LH发作开始之前,将雌二醇和孕激素引发的卵巢切除(OVX)雌性大鼠与葡萄糖抗代谢物,5-硫代葡萄糖(5TG)或生理盐水(SAL)一起注入到尾第四脑室(CV4)。 CV4内的选择性儿茶酚胺神经毒素6-OHDA的预处理可减弱LH的输出,但阻止了5TG的抑制作用。 5TG修饰了类固醇反馈相关A2的Fos染色的模式,但未改变其他髓样儿茶酚胺细胞群。术前对α1肾上腺素能受体激动剂甲氧明的注射引起后脑对促性腺激素释放激素(GnRH)神经元Fos标记和LH释放的糖皮质激素抑制位点特异性逆转。激光显微切割的A2神经元的Western印迹显示,葡糖刺激了Fos,但抑制了儿茶酚胺合成酶多巴胺-β-羟化酶。 5TG还减少了A2雌激素受体(ER)-α和孕激素受体的分布,但增加了ER-β蛋白。有趣的是,尽管GLUT3的表达下调且MCT2蛋白的表达没有变化,但5TG处理的大鼠的A2 AMPK活性却降低了。延髓前视神经GnRH神经元还表现出降低的AMPK激活,同时明显减少了垂体的神经肽信号传导。目前的研究表明,后脑的糖缺乏症部分地通过减少视前的去甲肾上腺素能输入来抑制LH激增,并且进一步暗示A2神经元是这种改变信号的来源。结果还表明,AMPK传感器失活不会取代药理学抑制葡萄糖分解代谢对A2细胞功能的影响,也不会取代对GnRH神经元的后脑糖原减少的传入信号。需要进一步的研究来确定这些细胞群中AMPK激活的降低是否反映出正能量平衡和/或雌激素对AMPK的直接作用的补偿性增加。

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