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首页> 外文期刊>Cellular Signalling >Smad3/Nox4-mediated mitochondrial dysfunction plays a crucial role in puromycin aminonucleoside-induced podocyte damage
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Smad3/Nox4-mediated mitochondrial dysfunction plays a crucial role in puromycin aminonucleoside-induced podocyte damage

机译:Smad3 / Nox4介导的线粒体功能障碍在嘌呤霉素氨基核苷诱导的足细胞损伤中起关键作用

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Podocyte depletion due to apoptosis is the key hallmark of proteinuric kidney disease progression. Recently, several studies reported that mitochondrial (mt) dysfunction is involved in podocyte injury,while the underlying molecularmechanisms remain elusive. This study investigated the potential proximal signaling related to in vitro and in vivo mitochondrial dysfunction in a puromycin aminonucleoside (PA)-induced podocyte injurymodel. PA time- and dose-dependently resulted in cultured mouse podocyte damage, presenting with an increase of apoptotic cells and induction of activated caspase3/9. PA also caused mitochondrial damage and dysfunction based on the downregulation of the mtDNA level, decrease of transcriptional factors mtTfa and Nrf-1, decrease of CoxI, II and IV, and reduction of the oxygen consumption level and mitochondrial membrane potential level as well as excessive production of cellular ROS. Additionally, antioxidantMnSOD and catalase levelswere decreased in mitochondrial fractions, and reduction of complex I and IV activity was also observed in PA-stimulated podocytes. Furthermore, an obvious translocation of p-Smad3 from the cytosol to nuclei and induction of mitochondrial Nox4were detected following PA application. The PA-induced shift of cytochrome cwas observed from mitochondria to the cytoplasm. Induction of Nox4 by PA administration was significantly repressed by Smad3-shRNA, while Nox4-shRNA showed no effect on PA-induced p-Smad3 activation. Notably, both Smad3 and Nox4 silencing significantly prevented the reduction of the mtDNA level, restored mitochondrial function, and decreased cellular apoptosis in PA-stimulated podocytes. A similar mitochondrial dysfunction was obtained in a PA-injected nephropathy rat, which was effectively inhibited by treatment with the antiproteinuric drug prednisone. In addition, Dab2 knockdown decreased albumin uptake and influx whereas it showed no effect on cellular apoptosis in PA-stimulated podocytes. In conclusion, our findings demonstrated that Smad3-Nox4 axis-mediated mitochondrial dysfunction is involved in PA-induced podocyte damage likely via increasing ROS generation and activating the cytochrome c-caspase9-caspase3 apoptotic signaling pathway. Dab2 may be required for the increased permeability of podocytes following injury.
机译:凋亡引起的足细胞耗竭是蛋白尿性肾脏疾病进展的关键标志。最近,一些研究报道线粒体(mt)功能障碍与足细胞损伤有关,而潜在的分子机制仍然难以捉摸。这项研究调查了嘌呤霉素氨基核苷(PA)诱导的足细胞损伤模型中与体外和体内线粒体功能障碍相关的潜在近端信号传导。 PA时间和剂量依赖性导致培养的小鼠足细胞损伤,表现为凋亡细胞增加和激活的caspase3 / 9诱导。 PA还由于线粒体DNA水平的下调,转录因子mtTfa和Nrf-1的降低,CoxI,II和IV的降低以及耗氧量和线粒体膜电位水平的降低以及过高而引起线粒体损伤和功能障碍。细胞ROS的产生。另外,线粒体组分中的抗氧化剂MnSOD和过氧化氢酶水平降低,并且在PA刺激的足细胞中也观察到复合物I和IV活性的降低。此外,在施用PA后,检测到p-Smad3从胞质到核的明显易位和线粒体Nox4的诱导。观察到PA诱导的细胞色素c从线粒体向细胞质的转移。 Smad3-shRNA显着抑制了PA诱导的Nox4诱导,而Nox4-shRNA对PA诱导的p-Smad3激活没有影响。值得注意的是,Smad3和Nox4沉默均显着阻止了mtDNA水平的降低,线粒体功能的恢复以及PA刺激的足细胞中细胞凋亡的减少。在注射PA的肾病大鼠中获得了相似的线粒体功能障碍,通过抗蛋白尿药物泼尼松治疗可以有效抑制线粒体功能障碍。此外,Dab2敲低减少白蛋白的摄取和流入,而对PA刺激的足细胞的细胞凋亡没有影响。总之,我们的发现表明Smad3-Nox4轴介导的线粒体功能障碍可能与PA诱导的足细胞损伤有关,可能是通过增加ROS生成并激活细胞色素c-caspase9-caspase3凋亡信号通路而引起的。损伤后可能需要Dab2来增加足细胞的通透性。

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