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首页> 外文期刊>PPAR research >Global gene expression profiling in PPAR-γ agonist-treated kidneys in an orthologous rat model of human autosomal recessive polycystic kidney disease
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Global gene expression profiling in PPAR-γ agonist-treated kidneys in an orthologous rat model of human autosomal recessive polycystic kidney disease

机译:在人类常染色体隐性隐性多囊肾病的直系大鼠模型中,PPAR-γ激动剂治疗的肾脏中的全局基因表达谱

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摘要

Kidneys are enlarged by aberrant proliferation of tubule epithelial cells leading to the formation of numerous cysts, nephron loss, and interstitial fibrosis in polycystic kidney disease (PKD). Pioglitazone (PIO), a PPAR-γ agonist, decreased cell proliferation, interstitial fibrosis, and inflammation, and ameliorated PKD progression in PCK rats (Am. J. Physiol.-Renal, 2011). To explore genetic mechanisms involved, changes in global gene expression were analyzed. By Gene Set Enrichment Analysis of 30655 genes, 13 of the top 20 downregulated gene ontology biological process gene sets and six of the top 20 curated gene set canonical pathways identified to be downregulated by PIOtreatment were related to cell cycle and proliferation, including EGF, PDGF and JNK pathways. Their relevant pathways were identified using the Kyoto Encyclopedia of Gene and Genomes database. Stearoyl-coenzyme A desaturase 1 is a key enzyme in fatty acid metabolism found in the top 5 genes downregulated by PIO treatment. Immunohistochemical analysis revealed that the gene product of this enzyme was highly expressed in PCK kidneys and decreased by PIO. These data show that PIO alters the expression of genes involved in cell cycle progression, cell proliferation, and fatty acid metabolism.
机译:肾小管上皮细胞的异常增殖导致肾脏扩大,从而导致多囊肾病(PKD)中形成许多囊肿,肾单位丢失和间质纤维化。吡格列酮(PIO)是一种PPAR-γ激动剂,可降低PCK大鼠的细胞增殖,间质纤维化和炎症,并改善PKD进程(Am。J. Physiol.-Renal,2011)。为了探索涉及的遗传机制,分析了全球基因表达的变化。通过对30655个基因的基因集富集分析,被确定为通过PIO处理被下调的前20个被下调的基因本体生物学过程基因集中的13个和经整理的前20个经过整理的基因集规范途径中的六个与细胞周期和增殖有关,包括EGF,PDGF和JNK途径。它们的相关途径已使用《京都议定书》的基因和基因组数据库进行了鉴定。硬脂酰辅酶A去饱和酶1是脂肪酸代谢中的关键酶,存在于PIO处理下调的前5个基因中。免疫组织化学分析表明,该酶的基因产物在PCK肾脏中高表达,并被PIO降低。这些数据表明,PIO可以改变参与细胞周期进程,细胞增殖和脂肪酸代谢的基因的表达。

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