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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >HINDBRAIN LACTATE REGULATES PREOPTIC GONADOTROPIN-RELEASING HORMONE (GNRH) NEURON GNRH-I PROTEIN BUT NOT AMPK RESPONSES TO HYPOGLYCEMIA IN THE STEROID-PRIMED OVARIECTOMIZED FEMALE RAT
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HINDBRAIN LACTATE REGULATES PREOPTIC GONADOTROPIN-RELEASING HORMONE (GNRH) NEURON GNRH-I PROTEIN BUT NOT AMPK RESPONSES TO HYPOGLYCEMIA IN THE STEROID-PRIMED OVARIECTOMIZED FEMALE RAT

机译:后脑乳酸调节诱导促性腺激素 - 释放激素(GNRH)神经元GnRH-I蛋白,但不是在类固醇灌注卵巢切除雌性大鼠中对低血糖血症的AMPK反应

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Steroid positive-feedback activation of the gonadotropin-releasing hormone (GnRH)-pituitary luteinizing hormone (LH) neuroendocrine axis propagates the pre ovulatory LH surge, a crucial component of female reproduction. Our work shows that this key event is restrained by inhibitory metabolic input from hindbrain A2 noradrenergic neurons. GnRH neurons express the ultra-sensitive energy sensor adenosine 5'-monophosphate-activated protein kinase (AMPK); here, we investigated the hypothesis that GnRH nerve cell AMPK and peptide neurotransmitter responses to insulin-induced hypoglycemia are controlled by hindbrain lack of the oxidizable glycolytic end-product L-lactate. Data show that hypoglycemic inhibition of LH release in steroid-primed ovariectomized female rats was reversed by coincident caudal hindbrain lactate infusion. Western blot analyses of laser-microdissected A2 neurons demonstrate hypoglycemic augmentation [Fos, estrogen receptor-beta (ER-beta), phosphoAMPK (pAMPK)] and inhibition (dopamine-beta-hydroxylase, GLUT3, MCT2) of protein expression in these cells, responses that were normalized by insulin plus lactate treatment. Hypoglycemia diminished rostral preoptic GnRH nerve cell GnRH-I protein and pAMPK content; the former, but not the latter response was reversed by lactate. Results implicate caudal hindbrain lactoprivic signaling in hypoglycemia-induced suppression of the LH surge, demonstrating that lactate repletion of that site reverses decrements in A2 catecholamine biosynthetic enzyme and GnRH neuropeptide precursor protein expression. Lack of effect of lactate on hypoglycemic patterns of GnRH AMPK activity suggests that this sensor is uninvolved in metabolic-inhibition of positive-feedback-stimulated hypophysiotropic signaling to pituitary gonadotropes. (C) 2015 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:促性腺激素释放激素的类固醇正反馈活化(促性腺激素释放激素)-pituitary促黄体激素(LH)神经内分泌轴传播预排卵LH波动,女性生殖的关键组成部分。我们的工作表明,这一关键事件是由抑制代谢输入从后脑A2肾上腺素能神经元抑制。 GnRH的神经元表达的超灵敏能量传感器腺苷5'-单磷酸活化蛋白激酶(AMPK);在这里,我们调查的假设GnRH的神经细胞AMPK和肽神经递质响应胰岛素诱发低血糖是由后脑缺乏可氧化糖最终产品L-乳酸的控制。数据显示LH释放的类固醇引发的切除卵巢的雌性大鼠的是降血糖抑制通过重合尾后脑乳酸输注逆转。激光显微切割A2神经元的Western印迹分析证明降糖增强[Fos蛋白,雌激素受体-β(ER-β),phosphoAMPK(pAMPK)〕和抑制蛋白质的表达的(多巴胺-β-羟化酶,GLUT3,MCT2)在这些细胞中,这是由胰岛素加乳酸治疗标准化响应。低血糖降低延髓视前区GnRH的神经细胞的GnRH-I蛋白和pAMPK内容;前者,而不是后者的反应是由乳酸逆转。结果牵累尾后脑lactoprivic信令在LH波动的低血糖诱导的抑制,这表明在A2儿茶酚胺生物合成酶和神经肽的GnRH前体蛋白表达该站点反转递减的该乳酸饱食。缺乏对GnRH的AMPK活性的降血糖模式乳酸效果表明,这种传感器在代谢抑制不参与正反馈刺激促垂体信令垂体促性腺激素。 (c)2015年IBRO。 elsevier有限公司出版。保留所有权利。

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