首页> 美国卫生研究院文献>Molecular and Cellular Biology >Phosphatidylinositol 3-Kinase-Mediated Effects of Glucose on Vacuolar H+-ATPase Assembly Translocation and Acidification of Intracellular Compartments in Renal Epithelial Cells
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Phosphatidylinositol 3-Kinase-Mediated Effects of Glucose on Vacuolar H+-ATPase Assembly Translocation and Acidification of Intracellular Compartments in Renal Epithelial Cells

机译:磷脂酰肌醇3-激酶介导的葡萄糖对肾上皮细胞内液泡H + -ATPase组装易位和酸化的影响

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摘要

Vacuolar H+-ATPases (V-ATPases) are a family of ATP-driven proton pumps. They maintain pH gradients between intracellular compartments and are required for proton secretion out of the cytoplasm. Mechanisms of extrinsic control of V-ATPase are poorly understood. Previous studies showed that glucose is an important regulator of V-ATPase assembly in Saccharomyces cerevisiae. Human V-ATPase directly interacts with aldolase, providing a coupling mechanism for glucose metabolism and V-ATPase function. Here we show that glucose is a crucial regulator of V-ATPase in renal epithelial cells and that the effect of glucose is mediated by phosphatidylinositol 3-kinase (PI3K). Glucose stimulates V-ATPase-dependent acidification of the intracellular compartments in human proximal tubular cells HK-2 and porcine renal epithelial cells LLC-PK1. Glucose induces rapid ATP-independent assembly of the V1 and Vo domains of V-ATPase and extensive translocation of the V-ATPase V1 and Vo domains between different membrane pools and between membranes and the cytoplasm. In HK-2 cells, glucose stimulates polarized translocation of V-ATPase to the apical plasma membrane. The effects of glucose on V-ATPase trafficking and assembly can be abolished by pretreatment with the PI3K inhibitor and can be reproduced in glucose-deprived cells by adenoviral expression of the constitutively active catalytic subunit p110α of PI3K. Taken together these data provide evidence that, in renal epithelial cells, glucose plays an important role in the control of V-ATPase-dependent acidification of intracellular compartments and V-ATPase assembly and trafficking and that the effects of glucose are mediated by PI3K-dependent signaling.
机译:液泡H + -ATPases(V-ATPases)是由ATP驱动的质子泵的一个家族。它们在细胞内区室之间维持pH梯度,是质子分泌到细胞质外所必需的。对V-ATPase的外部控制机制了解甚少。先前的研究表明,葡萄糖是酿酒酵母中V-ATPase组装的重要调节剂。人V-ATPase与醛缩酶直接相互作用,为葡萄糖代谢和V-ATPase功能提供了一种耦合机制。在这里,我们显示葡萄糖是肾上皮细胞中V-ATPase的关键调节剂,葡萄糖的作用是由磷脂酰肌醇3-激酶(PI3K)介导的。葡萄糖刺激人近端肾小管细胞HK-2和猪肾上皮细胞LLC-PK1的细胞内区室的V-ATPase依赖性酸化。葡萄糖诱导V-ATPase的V1和Vo结构域的快速非ATP组装,以及V-ATPase V1和Vo结构域在不同膜池之间以及在膜与细胞质之间的广泛移位。在HK-2细胞中,葡萄糖刺激V-ATPase极化迁移至顶质膜。可以通过用PI3K抑制剂预处理来消除葡萄糖对V-ATPase转运和组装的影响,并且可以通过腺病毒表达PI3K的组成型活性催化亚基p110α在葡萄糖缺乏的细胞中复制葡萄糖。这些数据加在一起提供的证据表明,在肾上皮细胞中,葡萄糖在控制细胞内区室的V-ATPase依赖性酸化以及V-ATPase的组装和运输中起着重要作用,并且葡萄糖的作用是由PI3K依赖性介导的信号。

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