首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Acute effects of leptin require PI3K signaling in hypothalamic proopiomelanocortin neurons in mice.
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Acute effects of leptin require PI3K signaling in hypothalamic proopiomelanocortin neurons in mice.

机译:瘦素的急性作用需要小鼠下丘脑前黑皮质素神经元中的PI3K信号传导。

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摘要

Normal food intake and body weight homeostasis require the direct action of leptin on hypothalamic proopiomelanocortin (POMC) neurons. It has been proposed that leptin action requires PI3K activity. We therefore assessed the contribution of PI3K signaling to leptin's effects on POMC neurons and organismal energy balance. Leptin caused a rapid depolarization of POMC neurons and an increase in action potential frequency in patch-clamp recordings of hypothalamic slices. Pharmacologic inhibition of PI3K prevented this depolarization and increased POMC firing rate, indicating a PI3K-dependent mechanism of leptin action. Mice with genetically disrupted PI3K signaling in POMC cells failed to undergo POMC depolarization or increased firing frequency in response to leptin. Insulin's ability to hyperpolarize POMC neurons was also abolished in these mice. Moreover, targeted disruption of PI3K blunted the suppression of feeding elicited by central leptin administration. Despite these differences, mice with impaired PI3K signaling in POMC neurons exhibited normal long-term body weight regulation. Collectively, these results suggest that PI3K signaling in POMC neurons is essential for leptin-induced activation and insulin-induced inhibition of POMC cells and for the acute suppression of food intake elicited by leptin, but is not a major contributor to the regulation of long-term organismal energy homeostasis.
机译:正常的食物摄入和体重稳态需要瘦素对下丘脑前黑皮质素 (POMC) 神经元的直接作用。有人提出瘦素作用需要PI3K活性。因此,我们评估了PI3K信号转导对瘦素对POMC神经元和生物体能量平衡的影响的贡献。瘦素导致POMC神经元的快速去极化和下丘脑切片膜片片钳记录中动作电位频率的增加。PI3K 的药理学抑制阻止了这种去极化并增加了 POMC 发射速率,表明瘦素作用的 PI3K 依赖性机制。POMC细胞中具有遗传破坏PI3K信号转导的小鼠未能经历POMC去极化或增加对瘦素的反应。胰岛素使POMC神经元超极化的能力在这些小鼠中也被消除。此外,PI3K的靶向破坏减弱了中枢瘦素给药引起的喂养抑制。尽管存在这些差异,但POMC神经元中PI3K信号转导受损的小鼠表现出正常的长期体重调节。总的来说,这些结果表明,POMC神经元中的PI3K信号转导对于瘦素诱导的POMC细胞活化和胰岛素诱导的抑制以及瘦素诱导的食物摄入的急性抑制至关重要,但不是调节长期生物体能量稳态的主要贡献者。

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