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首页> 外文期刊>Oncogene >Ligand-activated Ahr signaling leads to disruption of nephrogenesis and altered Wilms' tumor suppressor mRNA splicing
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Ligand-activated Ahr signaling leads to disruption of nephrogenesis and altered Wilms' tumor suppressor mRNA splicing

机译:配体激活的Ahr信号传导导致肾生成破坏并改变Wilms的肿瘤抑制基因mRNA剪接

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The aryl hydrocarbon receptor (Ahr), a member of the large basic helix–loop–helix (bHLH) and PAS homology domain superfamily, is a highly conserved transcriptional regulator involved in mammalian development. In the present study, a murine metanephros organ culture system was employed to evaluate the role of the Ahr signaling in nephrogenesis in vitro. Ahr and Wilms' tumor suppressor (wt1) mRNAs were detected by in situ hybridization and RT–PCR during the course of renal development. Treatment with 3M BaP, a hydrocarbon ligand of Ahr, inhibited glomerulogenesis and branching morphogenesis of metanephric kidneys. Deficits in the epithelialization of mesenchymal cells were evidenced by inhibition of the formation of podocyte foot processes and glomerular basement membranes. Hydrocarbon treatment markedly induced -KTS wt1 splice variants, although total wt1 mRNA levels remained unchanged. A significant decrease in total WT1 protein was observed by both immunocytochemistry and Western analysis in cultures challenged with BaP compared to controls. Comparison of metanephric cultures from Ahr+/+ and Ahr-/- mice showed that Ahr is involved in kidney development, and required for BaP-induced deficits in nephrogenesis. These results indicate that ligand activation of Ahr signaling disrupts nephrogenesis in vitro, and that this response involves modulation of wt1 alternative splicing and post-transcriptional control.
机译:芳烃受体(Ahr)是大的基本螺旋-环-螺旋(bHLH)和PAS同源域超家族的成员,是参与哺乳动物发育的高度保守的转录调节因子。在本研究中,采用小鼠后肾器官培养系统来评估Ahr信号在体外肾生成中的作用。在肾脏发育过程中,通过原位杂交和RT-PCR检测了Ahr和Wilms的肿瘤抑制因子(wt1)mRNA。用3M BaP(一种Ahr的碳氢化合物配体)治疗可抑制肾小球生成和后肾的分支形态发生。通过抑制足细胞足突和肾小球基底膜的形成来证明间充质细胞上皮细胞的缺乏。烃处理显着诱导了-KTS wt1剪接变体,尽管总wt1 mRNA水平保持不变。与对照组相比,在用BaP攻击的培养物中,通过免疫细胞化学和Western分析均观察到总WT1蛋白的显着降低。比较来自Ahr + / +和Ahr-/-小鼠的后肾培养物,发现Ahr参与肾脏发育,是BaP诱导的肾生成缺陷的必需条件。这些结果表明,Ahr信号的配体激活会在体外破坏肾发生,并且该反应涉及wt1选择性剪接和转录后调控的调控。

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