首页> 美国卫生研究院文献>The Journal of Biological Chemistry >High glucose reduces megalin-mediated albumin endocytosis in renal proximal tubule cells through protein kinase B O-GlcNAcylation
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High glucose reduces megalin-mediated albumin endocytosis in renal proximal tubule cells through protein kinase B O-GlcNAcylation

机译:高糖可通过蛋白激酶B O-GlcNAcylation减少肾小管细胞中巨蛋白介导的白蛋白内吞作用

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摘要

The role of albumin reabsorption in proximal tubule (PT) cells has emerged as an important factor in the genesis of albuminuria observed in the early stages of diabetes. Evidence has shown that a decrease in megalin expression could be the key mechanism in this process. In the present work, we investigated the molecular mechanism underlying the modulation of albumin endocytosis in LLC-PK1 cells, a model of PT cells. High glucose concentrations (HG) inhibited megalin expression and albumin endocytosis after 48 h of incubation. This inhibitory effect involves the entrance of glucose into PT cells through SGLT located at the luminal membrane. Once inside PT cells, glucose is diverted to the hexosamine biosynthetic pathway (HBP) increasing O-GlcNAcylation of several intracellular proteins, including PKB. This process promotes the inhibition of PKB activity measured by its phosphorylation at Thr-308 and Ser-473 and phosphorylation of specific substrates, glycogen synthase kinase 3β (GSK3β) and tuberous sclerosis complex 2. The decrease in PKB activity led to a decrease in megalin expression and, consequently, reducing albumin endocytosis in LLC-PK1 cells. HG did not change mammalian target of rapamycin (mTOR) C2 activity, responsible for phosphorylated PKB at Ser-473. In addition, HG activated the mTORC1/S6K pathway, but this effect was not correlated to the decrease in megalin expression or albumin endocytosis. Taken together, our data help to clarify the current understanding underlying the genesis of tubular albuminuria induced by hyperglycemia in the early stage of diabetes pathogenesis.
机译:白蛋白重吸收在近端小管(PT)细胞中的作用已成为糖尿病早期阶段观察到白蛋白尿发生的重要因素。有证据表明,巨蛋白表达的下降可能是该过程的关键机制。在目前的工作中,我们研究了LLC-PK1细胞(一种PT细胞的模型)中白蛋白内吞调节的分子机制。孵育48小时后,高葡萄糖浓度(HG)抑制了巨蛋白表达和白蛋白内吞作用。这种抑制作用涉及葡萄糖通过位于腔膜的SGLT进入PT细胞。一旦进入PT细胞,葡萄糖就会转移到己糖胺生物合成途径(HBP),从而增加包括PKB在内的几种细胞内蛋白的O-GlcNAcy化。该过程促进了通过在Thr-308和Ser-473上的磷酸化以及特定底物,糖原合酶激酶3β(GSK3β)和结节性硬化复合物2的磷酸化所测量的PKB活性的抑制。PKB活性的降低导致巨蛋白的降低表达,并因此减少LLC-PK1细胞中的白蛋白内吞作用。 HG不会改变雷帕霉素(mTOR)C2活性的哺乳动物靶标,该靶标负责Ser-473的磷酸化PKB。此外,HG激活了mTORC1 / S6K途径,但这种作用与巨蛋白表达或白蛋白内吞作用的降低无关。综上所述,我们的数据有助于阐明对糖尿病发病早期由高血糖引起的肾小管白蛋白尿的成因的当前理解。

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