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缺氧诱导的Bmi1通过PI3K/Akt信号通路促进肾小管上皮细胞向间充质细胞转化及肾纤维化。

Hypoxia-induced Bmi1 promotes renal tubular epithelial cell-mesenchymal transition and renal fibrosis via PI3K/Akt signal.

作者信息

Du Rui, Xia Lin, Ning Xiaoxuan, Liu Limin, Sun Wenjuan, Huang Chen, Wang Hanmin, Sun Shiren

机构信息

Department of Integrative Oncology and Radiation Oncology, Navy General Hospital, Beijing, 10037 China Department of Nephrology, Fourth Military Medical University, Xi'an 710032, China.

State Key Laboratory of Cancer Biology and Department of Digestive Diseases, Fourth Military Medical University, Xi'an 710032, China.

出版信息

Mol Biol Cell. 2014 Sep 1;25(17):2650-9. doi: 10.1091/mbc.E14-01-0044. Epub 2014 Jul 9.

Abstract

Hypoxia is an important microenvironmental factor in the development of renal fibrosis; however, the underlying mechanisms are not well elucidated. Here we show that hypoxia induces Bmi1 mRNA and protein expression in human tubular epithelial cells. We further demonstrate that Bmi1 expression might be directly regulated by hypoxia-inducible factor-1a (HIF-1a) under low oxygen. Moreover, chromatin immunoprecipitation and reporter gene assay studies reveal cooperative transactivation of Bmi1 by HIF-1α and Twist. Enforced Bmi1 expression induces epithelial-mesenchymal transition (EMT), whereas silencing endogenous Bmi-1 expression reverses hypoxia-induced EMT. Up-regulation of Bmi1 leads to stabilization of Snail via modulation of PI3K/Akt signaling, whereas ablation of PI3K/Akt signaling partially rescues the phenotype of Bmi1-overexpressing cells, indicating that PI3K/Akt signaling might be a major mediator of Bmi1-induced EMT. In a rat model of obstructive nephropathy, Bmi1 expression increases in a time-dependent manner. Furthermore, we demonstrate that increased levels of Bmi1, correlated with HIF-1α and Twist, are associated with patients with chronic kidney disease. We provide in vitro and in vivo evidence that activation of HIF-1a/Twist-Bmi1 signaling in renal epithelial cells is associated with the development of chronic renal disease and may promote fibrogenesis via modulation of PI3K/Akt/Snail signaling by facilitating EMT.

摘要

缺氧是肾纤维化发展过程中的一个重要微环境因素;然而,其潜在机制尚未完全阐明。在此我们表明,缺氧可诱导人肾小管上皮细胞中Bmi1 mRNA和蛋白表达。我们进一步证明,在低氧条件下,Bmi1表达可能受缺氧诱导因子-1α(HIF-1α)直接调控。此外,染色质免疫沉淀和报告基因分析研究揭示了HIF-1α和Twist对Bmi1的协同反式激活作用。强制表达Bmi1可诱导上皮-间质转化(EMT),而沉默内源性Bmi-1表达可逆转缺氧诱导的EMT。Bmi1的上调通过调节PI3K/Akt信号通路导致Snail稳定,而PI3K/Akt信号通路的缺失部分挽救了Bmi1过表达细胞的表型,表明PI3K/Akt信号通路可能是Bmi1诱导EMT的主要介导因子。在梗阻性肾病大鼠模型中,Bmi1表达呈时间依赖性增加。此外,我们证明,与HIF-1α和Twist相关的Bmi1水平升高与慢性肾病患者有关。我们提供了体外和体内证据,表明肾上皮细胞中HIF-1α/Twist-Bmi1信号通路的激活与慢性肾病的发展相关,并可能通过促进EMT调节PI3K/Akt/Snail信号通路来促进纤维化形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ee1/4148254/595985b20c44/2650fig1.jpg

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