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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Nrf2 ameliorates diabetic nephropathy progression by transcriptional repression of TGFβ1 through interactions with c-Jun and SP1
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Nrf2 ameliorates diabetic nephropathy progression by transcriptional repression of TGFβ1 through interactions with c-Jun and SP1

机译:Nrf2通过与c-Jun和SP1的相互作用而抑制TGFβ1的转录,从而改善糖尿病肾病的进展

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摘要

Diabetic nephropathy (DN) is one of the major complications in diabetes patients. Reactive oxygen species (ROS) play key roles in DN progression. As a primary transcription factor, Nrf2 controls the antioxidant response to maintain cellular redox homeostasis. Herein we systemically examined the role of Nrf2 in DN progression and its regulatory mechanism in a mouse model bearing type II diabetes and in cultured human renal mesangial cells (HRMCs). We found that Nrf2 could ameliorate DN progression by transcriptional repression of TGFβ1 in vivo and in vitro. Moreover, Nrf2 bound to the specific region in TGFβ1 promoter by interactions with transcription factors c-Jun and SP1. Significant abolishment of Nrf2-mediated TGFβ1 transcriptional repression could be accomplished by knockdown of either c- Jun or SP1, and site-directed mutagenesis of c-Jun and SP1 binding sites in the TGFβ1 promoter specific region. Moreover, after interacting with c-Jun and SP1, Nrf2 inhibited c-Jun and SP1 activations, and thus reversed c-Jun- and SP1-promoted TGFβ1 transcription. In all, Nrf2 could slow down DN progression by repression of TGFβ1 in a c-Jun and SP1-dependent way. Our findings may provide novel clues for DN preventions and interventions in clinic.
机译:糖尿病肾病(DN)是糖尿病患者的主要并发症之一。活性氧(ROS)在DN进程中起关键作用。作为主要的转录因子,Nrf2控制抗氧化反应以维持细胞氧化还原稳态。在本文中,我们系统地研究了Nrf2在DN进程中的作用及其在II型糖尿病小鼠模型和培养的人肾小球膜细胞(HRMCs)中的调控机制。我们发现,Nrf2可以通过体内外的TGFβ1转录抑制来改善DN进程。此外,Nrf2通过与转录因子c-Jun和SP1的相互作用与TGFβ1启动子的特定区域结合。 Nrf2介导的TGFβ1转录抑制的显着取消可以通过敲低c-Jun或SP1以及在TGFβ1启动子特异性区域对c-Jun和SP1结合位点进行定向诱变来实现。此外,在与c-Jun和SP1相互作用后,Nrf2抑制c-Jun和SP1的激活,从而逆转c-Jun-和SP1促进的TGFβ1转录。总之,Nrf2可以通过c-Jun和SP1依赖性方式抑制TGFβ1来减慢DN进程。我们的发现可能为DN预防和临床干预提供新的线索。

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