The purpose of this study was to examine the induction profiles (as judged by quantitative reverse tran- scription polymerase chain reaction (qRT-PCR)) of peroxisome proliferator-activated receptor (PPAR) α,β,...The purpose of this study was to examine the induction profiles (as judged by quantitative reverse tran- scription polymerase chain reaction (qRT-PCR)) of peroxisome proliferator-activated receptor (PPAR) α,β, y subtypes and major PPAR-target genes bearing a functional peroxisome proliferator responsive element (PPRE) in HepG2 cell model upon feeding with cis-9,trans-11-octadecadienoic acid (9-CLA) or trans-10,cis-12-octadecadienoic acid (10-CLA) or their precursor fatty acids (FAs). HepG2 cells were treated with 100 pmol/L 9-CLA or 10-CLA or their precursor FAs, viz., oleic, linoleic, and trans-11-vaccenic acids against bezafibrate control to evaluate the induc- tion/expression profiles of PPAR (α, β, γ subtypes and major PPAR-target genes bearing a functional PPRE, i.e., fatty acid transporter (FAT), glucose transporter-2 (GLUT-2), liver-type FA binding protein (L-FABP), acyl CoA oxidase-1 (ACOX-1), and peroxisomal bifunctional enzyme (PBE) with reference to β-actin as house keeping gene. Of the three housekeeping genes (glyceraldehyde 3-phosphate dehydrogenase (GAPDH), β-actin, and ubiquitin), β-actin was found to be stable. Dimethyl sulfoxide (DMSO), the common solubilizer of agonists, showed a significantly higher induction of genes analyzed, qRT-PCR profiles of CLAs and their precursor FAs clearly showed upregulation of FAT, GLUT-2, and L-FABP (-0.5-.0-fold). Compared to 10-CLA, 9-CLA decreased the induction of the FA metabolizing gene ACOX-1 less than did PBE, while 10-CLA decreased the induction of PBE less than did ACOX-I. Both CLAs and precursor FAs upregulated PPRE-beadng genes, but with comparatively less or marginal activation of PPAR subtypes This indicates that the binding of CLAs and their precursor FAs to PPAR subtypes results in PPAR activation, thereby induction of the target transporter genes coupled with downstream lipid metabolising genes such as ACOX-1 and PBE. To sum up, the expression profiles of these candidate genes showed that CLAs and their precursor FAs are involved in lipid signalling by modulating the PPAR a, 13, or ~ subtype for the indirect activation of the PPAR-target genes, which may in turn be responsible for the supposed health effects of CLA, and that care should be taken while calculating the actual fold induction values of candidate genes with reference to housekeeping gene and DMSO as they may impart false positive results.展开更多
目的观察大黄素对高糖培养的大鼠肾小球系膜细胞(GMC)p38MAPK/CREB/PPARγ/CTGF蛋白表达的影响,以探讨大黄素抑制高糖培养的GMC增殖及纤维化的可能机制。方法 Western blot方法检测p-p38MAPK/p-CREB/PPARγ/CTGF蛋白表达情况。结果高糖...目的观察大黄素对高糖培养的大鼠肾小球系膜细胞(GMC)p38MAPK/CREB/PPARγ/CTGF蛋白表达的影响,以探讨大黄素抑制高糖培养的GMC增殖及纤维化的可能机制。方法 Western blot方法检测p-p38MAPK/p-CREB/PPARγ/CTGF蛋白表达情况。结果高糖能够诱导大鼠GMCp-p38MAPK/p-CREB/CTGF表达增加,抑制PPARγ蛋白表达,与正常对照组比较差异有统计学意义(P<0.05)。大黄素可以抑制高糖诱导的p-p38MAPK/p-CREB/CTGF表达增加,阻滞高糖对PPARγ的抑制作用,与高糖组相比差异有统计学意义(P<0.05)。结论大黄素抑制高糖诱导的GMC增殖与纤维连接蛋白(FN)的高表达,与其调节p38MAPK信号传导通路如抑制高糖诱导的p-p38MAPK/p-CREB/CTGF高表达、增强PPARγ的表达等密切相关。展开更多
基金Project (No. SP 135/14-1) supported by the Deutsche Forschungs-gemeinschaft,Germany
文摘The purpose of this study was to examine the induction profiles (as judged by quantitative reverse tran- scription polymerase chain reaction (qRT-PCR)) of peroxisome proliferator-activated receptor (PPAR) α,β, y subtypes and major PPAR-target genes bearing a functional peroxisome proliferator responsive element (PPRE) in HepG2 cell model upon feeding with cis-9,trans-11-octadecadienoic acid (9-CLA) or trans-10,cis-12-octadecadienoic acid (10-CLA) or their precursor fatty acids (FAs). HepG2 cells were treated with 100 pmol/L 9-CLA or 10-CLA or their precursor FAs, viz., oleic, linoleic, and trans-11-vaccenic acids against bezafibrate control to evaluate the induc- tion/expression profiles of PPAR (α, β, γ subtypes and major PPAR-target genes bearing a functional PPRE, i.e., fatty acid transporter (FAT), glucose transporter-2 (GLUT-2), liver-type FA binding protein (L-FABP), acyl CoA oxidase-1 (ACOX-1), and peroxisomal bifunctional enzyme (PBE) with reference to β-actin as house keeping gene. Of the three housekeeping genes (glyceraldehyde 3-phosphate dehydrogenase (GAPDH), β-actin, and ubiquitin), β-actin was found to be stable. Dimethyl sulfoxide (DMSO), the common solubilizer of agonists, showed a significantly higher induction of genes analyzed, qRT-PCR profiles of CLAs and their precursor FAs clearly showed upregulation of FAT, GLUT-2, and L-FABP (-0.5-.0-fold). Compared to 10-CLA, 9-CLA decreased the induction of the FA metabolizing gene ACOX-1 less than did PBE, while 10-CLA decreased the induction of PBE less than did ACOX-I. Both CLAs and precursor FAs upregulated PPRE-beadng genes, but with comparatively less or marginal activation of PPAR subtypes This indicates that the binding of CLAs and their precursor FAs to PPAR subtypes results in PPAR activation, thereby induction of the target transporter genes coupled with downstream lipid metabolising genes such as ACOX-1 and PBE. To sum up, the expression profiles of these candidate genes showed that CLAs and their precursor FAs are involved in lipid signalling by modulating the PPAR a, 13, or ~ subtype for the indirect activation of the PPAR-target genes, which may in turn be responsible for the supposed health effects of CLA, and that care should be taken while calculating the actual fold induction values of candidate genes with reference to housekeeping gene and DMSO as they may impart false positive results.
文摘目的观察大黄素对高糖培养的大鼠肾小球系膜细胞(GMC)p38MAPK/CREB/PPARγ/CTGF蛋白表达的影响,以探讨大黄素抑制高糖培养的GMC增殖及纤维化的可能机制。方法 Western blot方法检测p-p38MAPK/p-CREB/PPARγ/CTGF蛋白表达情况。结果高糖能够诱导大鼠GMCp-p38MAPK/p-CREB/CTGF表达增加,抑制PPARγ蛋白表达,与正常对照组比较差异有统计学意义(P<0.05)。大黄素可以抑制高糖诱导的p-p38MAPK/p-CREB/CTGF表达增加,阻滞高糖对PPARγ的抑制作用,与高糖组相比差异有统计学意义(P<0.05)。结论大黄素抑制高糖诱导的GMC增殖与纤维连接蛋白(FN)的高表达,与其调节p38MAPK信号传导通路如抑制高糖诱导的p-p38MAPK/p-CREB/CTGF高表达、增强PPARγ的表达等密切相关。