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Brd4 inhibition attenuates unilateral ureteral obstruction-induced fibrosis by blocking TGF-β-mediated Nox4 expression

机译:Brd4抑制通过阻断TGF-β介导的Nox4表达来减轻单侧输尿管梗阻诱导的纤维化

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Uncovering new therapeutic targets for renal fibrosis holds promise for the treatment of chronic kidney diseases. Bromodomain and extra-terminal (BET) protein inhibitors have been shown to effectively ameliorate pathological fibrotic responses. However, the pharmacological effects and underlying mechanisms of these inhibitors in renal fibrosis remain elusive. In this study, we determined that the inhibition of Brd4, a BET family member, with a selective potent chemical inhibitor, JQ1, could prevent the development of renal fibrosis and block the progression of fibrosis in rats that have undergone unilateral ureteral obstruction (UUO). Inhibiting Brd4 with either JQ1 or genetic knockdown resulted in decreased expression of fibrotic genes such as α-smooth muscle actin, collagen IV and fibronectin both in UUO-induced fibrosis and upon TGF-β1 stimulation in HK-2 cells. Brd4 inhibition also suppressed the oxidative stress induced by UUO in vivo or by TGF-β1 in HK-2 cells. Moreover, Nox4, which is constitutively active in renal cells and is involved in the generation of hydrogen peroxide, was up-regulated during UUO-mediated fibrosis and induced by TGF-β1 in HK-2 cells, and this up-regulation could be blunted by Brd4 inhibition. Consistently, Nox4-mediated ROS generation and fibrotic gene expression were attenuated upon Brd4 inhibition. Further, the transcriptional activity of Nox4 was suppressed by JQ1 or siRNA against Brd4. Additionally, Smad3 and ERK1/2 phosphorylation, which are upstream signals of Nox4 expression, were inhibited both in JQ1-administered UUO rats and Brd4-inhibited HK-2 cells. In conclusion, these results indicated that the inhibition of Brd4 might protect against renal fibrosis by blocking the TGF-β-Nox4-ROS-fibrosis axis, suggesting that Brd4 could be a promising therapeutic target.
机译:发现肾纤维化的新治疗靶标有望治疗慢性肾脏疾病。溴结构域和末端外(BET)蛋白抑制剂已显示可有效改善病理性纤维化反应。但是,这些抑制剂在肾纤维化中的药理作用和潜在机制仍不清楚。在这项研究中,我们确定对BET家族成员Brd4的选择性强效化学抑制剂JQ1的抑制作用可以预防肾纤维化的发展并阻止单侧输尿管梗阻(UUO)大鼠的纤维化进程。用JQ1或基因敲除抑制Brd4会导致UUO诱导的纤维化以及HK-2细胞中TGF-β1刺激时,纤维化基因(例如α平滑肌肌动蛋白,IV型胶原和纤连蛋白)的表达降低。 Brd4抑制还抑制了UUO体内或TGF-β1在HK-2细胞中诱导的氧化应激。此外,在肾脏细胞中具有组成性活性并参与过氧化氢生成的Nox4在UUO介导的纤维化过程中被上调,并被TGF-β1诱导在HK-2细胞中,这种上调可能会减弱被Brd4抑制。一致地,Brd4抑制后,Nox4介导的ROS生成和纤维化基因表达减弱。此外,JQ1或siRNA针对Brd4抑制了Nox4的转录活性。另外,Smad3和ERK1 / 2磷酸化是Nox4表达的上游信号,在施用JQ1的UUO大鼠和抑制Brd4的HK-2细胞中均受到抑制。总之,这些结果表明,对Brd4的抑制可能通过阻断TGF-β-Nox4-ROS-纤维化轴来预防肾纤维化,提示Brd4可能是有希望的治疗靶点。

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