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Insulin-stimulated Plasma Membrane Fusion of Glut4 Glucose Transporter-containing Vesicles Is Regulated by Phospholipase D1

机译:磷脂酶D1调节含Glut4葡萄​​糖转运蛋白的囊泡的胰岛素刺激的血浆膜融合。

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Insulin stimulates glucose uptake in fat and muscle by mobilizing Glut4 glucose transporters from intracellular membrane storage sites to the plasma membrane. This process requires the trafficking of Glut4-containing vesicles toward the cell periphery, docking at exocytic sites, and plasma membrane fusion. We show here that phospholipase D (PLD) production of the lipid phosphatidic acid (PA) is a key event in the fusion process. PLD1 is found on Glut4-containing vesicles, is activated by insulin signaling, and traffics with Glut4 to exocytic sites. Increasing PLD1 activity facilitates glucose uptake, whereas decreasing PLD1 activity is inhibitory. Diminished PA production does not substantially hinder trafficking of the vesicles or their docking at the plasma membrane, but it does impede fusion-mediated extracellular exposure of the transporter. The fusion block caused by RNA interference-mediated PLD1 deficiency is rescued by exogenous provision of a lipid that promotes fusion pore formation and expansion, suggesting that the step regulated by PA is late in the process of vesicle fusion.
机译:胰岛素通过将Glut4葡萄​​糖转运蛋白从细胞内膜存储位点转移到质膜,刺激脂肪和肌肉中的葡萄糖摄取。此过程需要向细胞外围运输含Glut4的囊泡,停在胞外位点和质膜融合。我们在这里显示,磷脂酶D(PLD)生产的脂质磷脂酸(PA)是融合过程中的关键事件。 PLD1在含Glut4的囊泡上发现,并通过胰岛素信号传导激活,并与Glut4一起转运至胞外位点。增加PLD1活性有助于葡萄糖摄取,而降低PLD1活性则具有抑制作用。减少的PA产生基本上不会阻碍囊泡的运输或它们在质膜上的对接,但确实会阻止融合介导的转运蛋白的细胞外暴露。 RNA干扰介导的PLD1缺乏引起的融合阻滞可通过外源提供促进融合孔形成和扩展的脂质来挽救,这表明PA调控的步骤在囊泡融合过程中处于后期。

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