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The role of AMPKα in high-glucose-induced dysfunction of cultured rat mesangial cells

机译:AMPKα在高糖诱导的大鼠系膜细胞功能异常中的作用

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Aim: Adenosine 5'-monophosphate (AMP)-activated protein kinase (AMPK) is known as a mammalian cell energy sensor, which could regulate cellular energy metabolism via sensing the alterations of energy balance, such as oversupply or lack of glucose and fatty acid. Recent studies have suggested that AMPK could also regulate many other biological processes, including cell cycling, inflammation, protein synthesis, and so on. In this study, AMPK signaling in high-glucose-induced dysfunction of mesangial cells (MCs) was investigated. Methods: Established rat glomerular MCs were treated under normal glucose (5.6 mM glucose) or high-glucose conditions (30 mM glucose). mRNA levels of AMPK subunits were detected by reverse transcriptase-polymerase chain reaction. Expressions of AMPKα, phosphorylated AMPKα (p-AMPKα), phosphorylated acetyl-CoA carboxylase (p-ACC), and collagen IV were measured by Western blot. Results: Under high-glucose conditions, AMPKα protein expression and mRNA levels were significantly decreased. High-glucose treatment also induced a notable decrease in p-AMPKα and p-ACC expression. AMPKα activation by 5-aminoimidazole-4-carboxamide-1-β-d- ribofuranoside (AICAR) effectively ameliorated high-glucose-induced dysfunction of MCs, including cell proliferation, cell-cycle progression, and collagen IV production. Conclusion: High glucose impaired AMPKα in its expression and activity; AICAR significantly ameliorated high-glucose-induced proliferation of MCs and collagen IV production, indicating a role of AMPKα in high-glucose-induced dysfunction of MCs.
机译:目的:腺苷5'-单磷酸(AMP)激活的蛋白激酶(AMPK)被称为哺乳动物细胞能量传感器,可通过感知能量平衡的变化(例如供过于求或葡萄糖和脂肪酸缺乏)来调节细胞能量代谢。最近的研究表明,AMPK还可以调节许多其他生物学过程,包括细胞周期,炎症,蛋白质合成等。在这项研究中,AMPK信号在高糖诱导的肾小球系膜细胞(MCs)的功能障碍进行了调查。方法:在正常葡萄糖(5.6 mM葡萄糖)或高葡萄糖条件(30 mM葡萄糖)下处理已建立的大鼠肾小球MC。通过逆转录聚合酶链反应检测AMPK亚基的mRNA水平。通过蛋白质印迹法测量AMPKα,磷酸化AMPKα(p-AMPKα),磷酸化乙酰辅酶A羧化酶(p-ACC)和胶原蛋白IV的表达。结果:在高糖条件下,AMPKα蛋白表达和mRNA水平明显下降。高葡萄糖处理还引起p-AMPKα和p-ACC表达的显着下降。 5-氨基咪唑-4-羧酰胺-1-β-d-呋喃核糖苷(AICAR)激活AMPKα可有效缓解高糖诱导的MC的功能障碍,包括细胞增殖,细胞周期进程和IV型胶原产生。结论:高糖可降低AMPKα的表达和活性。 AICAR显着改善了高糖诱导的MCs增殖和胶原IV的产生,表明AMPKα在高糖诱导的MCs功能障碍中发挥了作用。

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