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Wnt/β‐catenin/RAS signaling mediates age‐related renal fibrosis and is associated with mitochondrial dysfunction

机译:Wnt /β-catenin/ RAS信号介导年龄相关的肾纤维化并与线粒体功能障碍有关

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摘要

Renal fibrosis is the common pathological feature in a variety of chronic kidney diseases. Aging is highly associated with the progression of renal fibrosis. Among several determinants, mitochondrial dysfunction plays an important role in aging. However, the underlying mechanisms of mitochondrial dysfunction in age‐related renal fibrosis are not elucidated. Herein, we found that Wnt/β‐catenin signaling and renin–angiotensin system (RAS) activity were upregulated in aging kidneys. Concomitantly, mitochondrial mass and functions were impaired with aging. Ectopic expression of Klotho, an antagonist of endogenous Wnt/β‐catenin activity, abolished renal fibrosis in d‐galactose (d‐gal)‐induced accelerated aging mouse model and significantly protected renal mitochondrial functions by preserving mass and diminishing the production of reactive oxygen species. In an established aging mouse model, dickkopf 1, a more specific Wnt inhibitor, and the mitochondria‐targeted antioxidant mitoquinone restored mitochondrial mass and attenuated tubular senescence and renal fibrosis. In a human proximal tubular cell line (HKC‐8), ectopic expression of Wnt1 decreased biogenesis and induced dysfunction of mitochondria, and triggered cellular senescence. Moreover, d‐gal triggered the transduction of Wnt/β‐catenin signaling, which further activated angiotensin type 1 receptor (AT1), and then decreased the mitochondrial mass and increased cellular senescence in HKC‐8 cells and primary cultured renal tubular cells. These effects were inhibited by AT1 blocker of losartan. These results suggest inhibition of Wnt/β‐catenin signaling and the RAS could slow the onset of age‐related mitochondrial dysfunction and renal fibrosis. Taken together, our results indicate that Wnt/β‐catenin/RAS signaling mediates age‐related renal fibrosis and is associated with mitochondrial dysfunction.
机译:肾纤维化是多种慢性肾脏疾病的共同病理特征。衰老与肾纤维化的进展高度相关。在几个决定因素中,线粒体功能障碍在衰老中起重要作用。但是,尚未阐明年龄相关性肾纤维化中线粒体功能障碍的潜在机制。在这里,我们发现衰老的肾脏中的Wnt /β-catenin信号和肾素-血管紧张素系统(RAS)活性上调。同时,线粒体的质量和功能也随着衰老而受损。内源性Wnt /β-catenin活性的拮抗剂Klotho的异位表达消除了d-半乳糖(d-gal)诱导的加速衰老小鼠模型中的肾纤维化,并通过保留质量并减少了活性氧的产生而显着保护了肾脏线粒体功能。种类。在已建立的衰老小鼠模型中,更具特异性的Wnt抑制剂dickkopf 1和针对线粒体的抗氧化剂米托醌可恢复线粒体质量,并减弱肾小管衰老和肾纤维化。在人类近端肾小管细胞系(HKC-8)中,Wnt1的异位表达降低了生物发生并诱导了线粒体功能障碍,并触发了细胞衰老。此外,d-gal触发了Wnt /β-catenin信号转导,进一步激活了血管紧张素1型受体(AT1),然后降低了HKC-8细胞和原代培养肾小管细胞的线粒体质量并增加了细胞衰老。这些作用被氯沙坦的AT1阻断剂抑制。这些结果表明,Wnt /β-catenin信号的抑制和RAS可以减缓与年龄相关的线粒体功能障碍和肾纤维化的发作。两者合计,我们的结果表明Wnt /β-catenin/ RAS信号传导介导年龄相关的肾纤维化,并与线粒体功能障碍有关。

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