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中枢性瘦素抵抗中的信号转导和转录激活因子3磷酸化

STAT3 phosphorylation in central leptin resistance.

作者信息

Liu Huimin, Du Tianxin, Li Chen, Yang Guoqing

机构信息

College of Life Science, Henan Agricultural University, 95 Wen Hua Road, Zhengzhou, 450002, China.

出版信息

Nutr Metab (Lond). 2021 Apr 13;18(1):39. doi: 10.1186/s12986-021-00569-w.

Abstract

Mechanism exploitation of energy homeostasis is urgently required because of the worldwide prevailing of obesity-related metabolic disorders in human being. Although it is well known that leptin plays a central role in regulating energy balance by suppressing food intake and promoting energy expenditure, the existence of leptin resistance in majority of obese individuals hampers the utilization of leptin therapy against these disorders. However, the mechanism of leptin resistance is largely unknown in spite of the globally enormous endeavors. Current theories to interpret leptin resistance include the impairment of leptin transport, attenuation of leptin signaling, chronic inflammation, ER tress, deficiency of autophagy, as well as leptin itself. Leptin-activated leptin receptor (LepRb) signals in hypothalamus via several pathways, in which JAK2-STAT3 pathway, the most extensively investigated one, is considered to mediate the major action of leptin in energy regulation. Upon leptin stimulation the phosphorylation of STAT3 is one of the key events in JAK2-STAT3 pathway, followed by the dimerization and nuclear translocation of this molecule. Phosphorylated STAT3 (p-STAT3), as a transcription factor, binds to and regulates its target gene such as POMC gene, playing the physiological function of leptin. Regarding POMC gene in hypothalamus however little is known about the detail of its interaction with STAT3. Moreover the status of p-STAT3 and its significance in hypothalamus of DIO mice needs to be well elucidated. This review comprehends literatures on leptin and leptin resistance and especially discusses what STAT3 phosphorylation would contribute to central leptin resistance.

摘要

由于全球范围内肥胖相关代谢紊乱在人类中普遍存在,迫切需要对能量稳态的机制进行研究。尽管众所周知,瘦素在通过抑制食物摄入和促进能量消耗来调节能量平衡中起着核心作用,但大多数肥胖个体中存在的瘦素抵抗阻碍了利用瘦素治疗这些疾病。然而,尽管全球范围内付出了巨大努力,瘦素抵抗的机制在很大程度上仍然未知。目前解释瘦素抵抗的理论包括瘦素转运受损、瘦素信号减弱、慢性炎症、内质网应激、自噬缺陷以及瘦素本身。瘦素激活的瘦素受体(LepRb)在下丘脑中通过多种途径发出信号,其中研究最广泛的JAK2-STAT3途径被认为介导了瘦素在能量调节中的主要作用。在瘦素刺激下,STAT3的磷酸化是JAK2-STAT3途径中的关键事件之一,随后该分子发生二聚化和核转位。磷酸化的STAT3(p-STAT3)作为一种转录因子,与诸如POMC基因等靶基因结合并对其进行调节,发挥瘦素的生理功能。然而,关于下丘脑POMC基因与STAT3相互作用的细节知之甚少。此外,DIO小鼠下丘脑中p-STAT3的状态及其意义需要得到充分阐明。本综述综合了有关瘦素和瘦素抵抗的文献,特别讨论了STAT3磷酸化对中枢性瘦素抵抗的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb1/8045279/ba7051b27dc3/12986_2021_569_Fig1_HTML.jpg

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