Whiteside Catharine, Wang Hong, Xia Ling, Munk Snezana, Goldberg Howard J, Fantus I George
Department of Medicine, University Health Network, Toronto, ON, Canada.
Exp Diabetes Res. 2009;2009:910783. doi: 10.1155/2009/910783. Epub 2009 Jul 7.
Peroxisome proliferator-activated receptor (PPARgamma), a ligand-dependent transcription factor, negatively modulates high glucose effects. We postulated that rosiglitazone (RSG), an activator of PPARgamma prevents the upregulation of vascular endothelial growth factor (VEGF) and collagen IV by mesangial cells exposed to high glucose. Primary cultured rat mesangial cells were growth-arrested in 5.6 mM (NG) or 25 mM D-glucose (HG) for up to 48 hours. In HG, PPARgamma mRNA and protein were reduced within 3 h, and enhanced ROS generation, expression of p22(phox), VEGF and collagen IV, and PKC-zeta membrane association were prevented by RSG. In NG, inhibition of PPARgamma caused ROS generation and VEGF expression that were unchanged by RSG. Reduced AMP-activated protein kinase (AMPK) phosphorylation in HG was unchanged with RSG, and VEGF expression was unaffected by AMPK inhibition. Hence, PPARgamma is a negative modulator of HG-induced signaling that acts through PKC-zeta but not AMPK and regulates VEGF and collagen IV expression by mesangial cells.
过氧化物酶体增殖物激活受体(PPARγ)是一种依赖配体的转录因子,对高糖效应起负向调节作用。我们推测,PPARγ激活剂罗格列酮(RSG)可防止高糖环境下系膜细胞中血管内皮生长因子(VEGF)和IV型胶原的上调。将原代培养的大鼠系膜细胞在5.6 mM(正常血糖,NG)或25 mM D-葡萄糖(高糖,HG)中生长停滞长达48小时。在高糖环境下,PPARγ mRNA和蛋白在3小时内减少,而RSG可防止活性氧生成增加、p22(phox)、VEGF和IV型胶原的表达增加以及PKC-ζ膜结合增加。在正常血糖环境下,抑制PPARγ会导致活性氧生成和VEGF表达增加,而RSG对此无影响。高糖环境下AMP活化蛋白激酶(AMPK)磷酸化降低,RSG对此无改变,且VEGF表达不受AMPK抑制的影响。因此,PPARγ是高糖诱导信号转导的负向调节因子,通过PKC-ζ而非AMPK发挥作用,并调节系膜细胞中VEGF和IV型胶原的表达。