首页> 美国卫生研究院文献>eNeuro >GLP-1R Signaling Directly Activates Arcuate Nucleus Kisspeptin Action in Brain Slices but Does not Rescue Luteinizing Hormone Inhibition in Ovariectomized Mice During Negative Energy Balance
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GLP-1R Signaling Directly Activates Arcuate Nucleus Kisspeptin Action in Brain Slices but Does not Rescue Luteinizing Hormone Inhibition in Ovariectomized Mice During Negative Energy Balance

机译:GLP-1R信号直接激活大脑切片中的弓形核Kisspeptin作用,但在负能量平衡过程中无法挽救去卵巢小鼠的黄体激素抑制作用

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摘要

Kisspeptin (Kiss1) neurons in the hypothalamic arcuate nucleus (ARC) are key components of the hypothalamic-pituitary-gonadal axis, as they regulate the basal pulsatile release of gonadotropin releasing hormone (GnRH). ARC Kiss1 action is dependent on energy status, and unmasking metabolic factors responsible for modulating ARC Kiss1 neurons is of great importance. One possible factor is glucagon-like peptide 1 (GLP-1), an anorexigenic neuropeptide produced by brainstem preproglucagon neurons. Because GLP fiber projections and the GLP-1 receptor (GLP-1R) are abundant in the ARC, we hypothesized that GLP-1R signaling could modulate ARC Kiss1 action. Using ovariectomized mice, we found that GLP-producing fibers come in close apposition with ARC Kiss1 neurons; these neurons also contain Glp1r mRNA. Electrophysiological recordings revealed that liraglutide (a long-acting GLP-1R agonist) increased action potential firing and caused a direct membrane depolarization of ARC Kiss1 cells in brain slices. We determined that brainstem preproglucagon mRNA is decreased after a 48-h fast in mice, a negative energy state in which ARC Kiss1 expression and downstream GnRH/luteinizing hormone (LH) release are potently suppressed. However, activation of GLP-1R signaling in fasted mice with liraglutide was not sufficient to prevent LH inhibition. Furthermore, chronic central infusions of the GLP-1R antagonist, exendin(9–39), in ad libitum–fed mice did not alter ARC Kiss1 mRNA or plasma LH. As a whole, these data identify a novel interaction of the GLP-1 system with ARC Kiss1 neurons but indicate that CNS GLP-1R signaling alone is not critical for the maintenance of LH during fasting or normal feeding.
机译:下丘脑弓状核(ARC)中的Kisspeptin(Kiss1)神经元是下丘脑-垂体-性腺轴的关键组成部分,因为它们调节促性腺激素释放激素(GnRH)的基础搏动性释放。 ARC Kiss1的作用取决于能量状态,揭露负责调节ARC Kiss1神经元的代谢因子非常重要。一种可能的因素是胰高血糖素样肽1(GLP-1),这是一种由脑干前胰高血糖素原前神经元产生的厌食神经肽。由于ARC中GLP纤维投射物和GLP-1受体(GLP-1R)丰富,因此我们假设GLP-1R信号传导可以调节ARC Kiss1的作用。使用去卵巢小鼠,我们发现产生GLP的纤维与ARC Kiss1神经元紧密并存。这些神经元也含有Glp1r mRNA。电生理记录显示,利拉鲁肽(一种长效GLP-1R激动剂)增加了动作电位的放电,并导致脑片中ARC Kiss1细胞的直接膜去极化。我们确定在小鼠中禁食48小时后脑干前胰高血糖素前体mRNA降低,其中负电状态可有效抑制ARC Kiss1表达和下游GnRH /黄体生成激素(LH)释放。但是,用利拉鲁肽在禁食小鼠中激活GLP-1R信号不足以阻止LH抑制。此外,在随意喂养的小鼠中长期集中输注GLP-1R拮抗剂exendin(9–39)不会改变ARC Kiss1 mRNA或血浆LH。总体而言,这些数据确定了GLP-1系统与ARC Kiss1神经元的新型相互作用,但表明单独的CNS GLP-1R信号对于禁食或正常喂养期间维持LH并不关键。

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