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Ras对超氧化物的调节作用激活了糖尿病诱导的肾损伤中依赖ERK的纤连蛋白表达。

Ras modulation of superoxide activates ERK-dependent fibronectin expression in diabetes-induced renal injuries.

作者信息

Lin C-L, Wang F-S, Kuo Y-R, Huang Y-T, Huang H-C, Sun Y-C, Kuo Y-H

机构信息

Department of Nephrology, Chiayi Chang Gung Memorial Hospital & Graduate Institute of Clinical Medical Sciences, College of Medicine, Chang Gung University, Chiayi, Taiwan.

出版信息

Kidney Int. 2006 May;69(9):1593-600. doi: 10.1038/sj.ki.5000329.

Abstract

Although previous studies have demonstrated that diabetic nephropathy is attributable to early extracellular matrix accumulation in glomerular mesangial cells, the molecular mechanism by which high glucose induces matrix protein deposition remains not fully elucidated. Rat mesangial cells pretreated with or without inhibitors were cultured in high-glucose or advanced glycation end product (AGE) conditions. Streptozotocin-induced diabetic rats were given superoxide dismutase (SOD)-conjugated propylene glycol to scavenge superoxide. Transforming growth factor (TGF)-beta1, fibronectin expression, Ras, ERK, p38, and c-Jun activation of glomerular mesangial cells or urinary albumin secretion were assessed. Superoxide, not nitric oxide or hydrogen peroxide, mediated high glucose- and AGE-induced TGF-beta1 and fibronectin expression. Pretreatment with diphenyliodonium, not allopurinol or rotenone, reduced high-glucose and AGE augmentation of superoxide synthesis and fibronection expression. High glucose and AGEs rapidly enhanced Ras activation and progressively increased cytosolic ERK and nuclear c-Jun activation. Inhibiting Ras by manumycin A reduced the stimulatory effects of high glucose and AGEs on superoxide and fibronectin expression. SOD or PD98059 pretreatment reduced high-glucose and AGE promotion of ERK and c-Jun activation. Exogenous SOD treatment in diabetic rats significantly attenuated diabetes induction of superoxide, urinary albumin excretion, 8-hydroxy-2'-deoxyguanosine, TGF-beta1, and fibronectin immunoreactivities in renal glomerular mesangial cells. Ras induction of superoxide activated ERK-dependent fibrosis-stimulatory factor and extracellular matrix gene transcription of mesangial cells. Reduction of oxidative stress by scavenging superoxide may provide an alternative strategy for controlling diabetes-induced early renal injury.

摘要

尽管先前的研究表明糖尿病肾病归因于肾小球系膜细胞早期细胞外基质的积累,但高糖诱导基质蛋白沉积的分子机制仍未完全阐明。将用或不用抑制剂预处理的大鼠系膜细胞在高糖或晚期糖基化终产物(AGE)条件下培养。给链脲佐菌素诱导的糖尿病大鼠注射超氧化物歧化酶(SOD)偶联的丙二醇以清除超氧化物。评估肾小球系膜细胞的转化生长因子(TGF)-β1、纤连蛋白表达、Ras、ERK、p38和c-Jun激活或尿白蛋白分泌。超氧化物而非一氧化氮或过氧化氢介导高糖和AGE诱导的TGF-β1和纤连蛋白表达。用二苯基碘鎓预处理而非别嘌呤醇或鱼藤酮可减少高糖和AGE对超氧化物合成和纤连蛋白表达的增强作用。高糖和AGEs迅速增强Ras激活,并逐渐增加细胞溶质ERK和核c-Jun激活。用马尼霉素A抑制Ras可降低高糖和AGEs对超氧化物和纤连蛋白表达的刺激作用。SOD或PD98059预处理可减少高糖和AGE对ERK和c-Jun激活的促进作用。糖尿病大鼠的外源性SOD治疗显著减弱了糖尿病诱导的肾小球系膜细胞中超氧化物、尿白蛋白排泄、8-羟基-2'-脱氧鸟苷、TGF-β1和纤连蛋白免疫反应性。Ras诱导的超氧化物激活系膜细胞中ERK依赖性纤维化刺激因子和细胞外基质基因转录。通过清除超氧化物降低氧化应激可能为控制糖尿病诱导的早期肾损伤提供一种替代策略。

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