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首页> 外文期刊>Molecular Metabolism >Pannexin 1 is required for full activation of insulin-stimulated glucose uptake in adipocytes
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Pannexin 1 is required for full activation of insulin-stimulated glucose uptake in adipocytes

机译:完全激活胰岛素刺激的脂肪细胞摄取葡萄糖需要Pannexin 1

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Objective: Defective glucose uptake in adipocytes leads to impaired metabolic homeostasis and insulin resistance, hallmarks of type 2 diabetes. Extracellular ATP-derived nucleotides and nucleosides are important regulators of adipocyte function, but the pathway for controlled ATP release from adipocytes is unknown. Here, we investigated whether Pannexin 1 (Panx1) channels control ATP release from adipocytes and contribute to metabolic homeostasis. Methods: We assessed Panx1 functionality in cultured 3T3-L1 adipocytes and in adipocytes isolated from murine white adipose tissue by measuring ATP release in response to known activators of Panx1 channels. Glucose uptake in cultured 3T3-L1 adipocytes was measured in the presence of Panx1 pharmacologic inhibitors and in adipocytes isolated from white adipose tissue from wildtype (WT) or adipocyte-specific Panx1 knockout (AdipPanx1 KO) mice generated in our laboratory. We performed in vivo glucose uptake studies in chow fed WT and AdipPanx1 KO mice and assessed insulin resistance in WT and AdipPanx1 KO mice fed a high fat diet for 12 weeks. Panx1 channel function was assessed in response to insulin by performing electrophysiologic recordings in a heterologous expression system. Finally, we measured Panx1 mRNA in human visceral adipose tissue samples by qRT-PCR and compared expression levels with glucose levels and HOMA-IR measurements in patients. Results: Our data show that adipocytes express functional Pannexin 1 (Panx1) channels that can be activated to release ATP. Pharmacologic inhibition or selective genetic deletion of Panx1 from adipocytes decreased insulin-induced glucose uptake in vitro and in vivo and exacerbated diet-induced insulin resistance in mice. Further, we identify insulin as a novel activator of Panx1 channels. In obese humans Panx1 expression in adipose tissue is increased and correlates with the degree of insulin resistance. Conclusions: We show that Panx1 channel activity regulates insulin-stimulated glucose uptake in adipocytes and thus contributes to control of metabolic homeostasis.
机译:目的:脂肪细胞摄取葡萄糖不良会导致代谢稳态和胰岛素抵抗受损,这是2型糖尿病的标志。细胞外ATP衍生的核苷酸和核苷是脂肪细胞功能的重要调节剂,但是从脂肪细胞释放ATP的受控途径尚不清楚。在这里,我们调查了Pannexin 1(Panx1)通道是否控制脂肪细胞中的ATP释放并有助于代谢稳态。方法:通过测量对Panx1通道已知激活剂的ATP释放,我们评估了培养的3T3-L1脂肪细胞和从鼠类白色脂肪组织分离的脂肪细胞中的Panx1功能。在存在Panx1药理抑制剂的情况下以及在从我们实验室产生的野生型(WT)或脂肪细胞特异性Panx1基因敲除(AdipPanx1 KO)小鼠的白色脂肪组织分离的脂肪细胞中,测量培养的3T3-L1脂肪细胞中的葡萄糖摄取。我们在以高脂饮食喂养的WT和AdipPanx1 KO小鼠中进行体内葡萄糖摄取研究,并评估以高脂饮食喂养12周的WT和AdipPanx1 KO小鼠的胰岛素抵抗。通过在异源表达系统中执行电生理记录来评估Panx1通道功能是否响应胰岛素。最后,我们通过qRT-PCR测量了人内脏脂肪组织样品中的Panx1 mRNA,并将表达水平与患者的血糖水平和HOMA-IR测量值进行了比较。结果:我们的数据显示,脂肪细胞表达功能性Pannexin 1(Panx1)通道,该通道可被激活以释放ATP。脂肪细胞中Panx1的药理抑制或选择性遗传删除可降低胰岛素诱导的体内和体外葡萄糖摄取,并加剧小鼠中饮食诱导的胰岛素抵抗。此外,我们确定胰岛素为Panx1通道的新型激活剂。在肥胖的人中,脂肪组织中Panx1的表达增加,并且与胰岛素抵抗的程度有关。结论:我们显示Panx1通道活性调节脂肪细胞中胰岛素刺激的葡萄糖摄取,从而有助于控制代谢稳态。

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