首页> 外文期刊>The Journal of Endocrinology: The Journal of the Society for Endocrinology >20 YEARS OF LEPTIN: Connecting leptin signaling to biological function
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20 YEARS OF LEPTIN: Connecting leptin signaling to biological function

机译:瘦素20年:将瘦素信号传导与生物学功能联系起来

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Hypothalamic leptin action promotes negative energy balance and modulates glucose homeostasis, as well as serving as a permissive signal to the neuroendocrine axes that control growth and reproduction. Since the initial discovery of leptin 20 years ago, we have learned a great deal about the molecular mechanisms of leptin action. An important aspect of this has been the dissection of the cellular mechanisms of leptin signaling, and how specific leptin signals influence physiology. Leptin acts via the long form of the leptin receptor LepRb. LepRb activation and subsequent tyrosine phosphorylation recruits and activates multiple signaling pathways, including STAT transcription factors, SHP2 and ERK signaling, the IRS-protein/PI3Kinase pathway, and SH2B1. Each of these pathways controls specific aspects of leptin action and physiology. Important inhibitory pathways mediated by suppressor of cytokine signaling proteins and protein tyrosine phosphatases also limit physiologic leptin action. This review summarizes the signaling pathways engaged by LepRb and their effects on energy balance, glucose homeostasis, and reproduction. Particular emphasis is given to the multiple mouse models that have been used to elucidate these functions in vivo .
机译:下丘脑瘦素的作用促进负能量平衡,调节葡萄糖稳态,并作为控制生长和繁殖的神经内分泌轴的信号。自20年前首次发现瘦素以来,我们已经了解了许多有关瘦素作用的分子机制。这方面的重要方面是解剖瘦素信号传导的细胞机制,以及特异性瘦素信号如何影响生理。瘦素通过瘦素受体LepRb的长形式起作用。 LepRb激活和随后的酪氨酸磷酸化募集并激活了多种信号传导途径,包括STAT转录因子,SHP2和ERK信号传导,IRS蛋白/ PI3Kinase途径以及SH2B1。这些途径均控制着瘦素作用和生理学的特定方面。细胞因子信号蛋白和蛋白酪氨酸磷酸酶抑制剂的介导的重要抑制途径也限制了生理瘦素的作用。这篇综述总结了LepRb参与的信号传导途径及其对能量平衡,葡萄糖稳态和繁殖的影响。特别强调已用于阐明体内这些功能的多种小鼠模型。

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