[Reduction in RNF125-mediated RIG-I ubiquitination and degradation promotes renal inflammation and fibrosis progression].

Q3 Medicine
Lu-Xin Li, Ting-Ting Ji, Li Lu, Xiao-Ying Li, Li-Min Lu, Shou-Jun Bai
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引用次数: 0

Abstract

Persistent inflammation plays a pivotal role in the initiation and progression of renal fibrosis. Activation of the pattern recognition receptor retinoic acid-inducible gene-I (RIG-I) is implicated in the initiation of inflammation. This study aimed to investigate the upstream mechanisms that regulates the activation of RIG-I and its downstream signaling pathway. Eight-week-old male C57BL/6 mice were used to establish unilateral ureteral obstruction (UUO)-induced renal fibrosis model, and the renal tissue samples were collected 14 days later for analysis. Transforming growth factor-β (TGF-β)-treated mouse renal tubular epithelial cells were used in in vitro studies. The results demonstrated that, compared to the control group, UUO kidney exhibited significant fibrosis, which was accompanied by the increases of RIG-I, p-NF-κB p65 and inflammatory cytokines, such as TNF-α and IL-1β. Additionally, the protein level of the E3 ubiquitin ligase RNF125 was significantly downregulated and predominantly localized in the renal tubular epithelial cells. Similarly, the treatment of tubular cells with TGF-β induced the increases in RIG-I, p-NF-κB p65 and inflammatory cytokines while decreasing RNF125. Co-immunoprecipitation (Co-IP) assays confirmed that RNF125 was able to interact with RIG-I. Overexpression of RNF125 promoted the ubiquitination of RIG-I, and accelerated its degradation via the ubiquitin-proteasome pathway. Overexpression of RNF125 in UUO kidneys and in vitro tubular cells effectively mitigated the inflammatory response and renal fibrosis. In summary, our results demonstrated that the decrease in RNF125 under pathological conditions led to reduction in RIG-I ubiquitination and degradation, activation of the downstream NF-κB signaling pathway and increase in inflammatory cytokine production, which promoted the progression of renal fibrosis.

[rnf125介导的RIG-I泛素化和降解的减少促进肾脏炎症和纤维化进展]。
持续炎症在肾纤维化的发生和发展中起关键作用。模式识别受体视黄酸诱导基因i (RIG-I)的激活与炎症的开始有关。本研究旨在探讨调控rig - 1激活的上游机制及其下游信号通路。采用8周龄雄性C57BL/6小鼠建立单侧输尿管梗阻(UUO)致肾纤维化模型,14 d后采集肾组织标本进行分析。用转化生长因子-β (TGF-β)处理的小鼠肾小管上皮细胞进行体外研究。结果显示,与对照组相比,UUO组肾脏出现明显纤维化,伴有RIG-I、p-NF-κB p65及炎症因子TNF-α、IL-1β升高。此外,E3泛素连接酶RNF125的蛋白水平显著下调,主要定位于肾小管上皮细胞。同样,用TGF-β处理小管细胞诱导RIG-I、p-NF-κB p65和炎性细胞因子升高,而RNF125降低。共免疫沉淀(Co-IP)实验证实RNF125能够与rig - 1相互作用。RNF125的过表达促进RIG-I的泛素化,并通过泛素-蛋白酶体途径加速其降解。在UUO肾脏和体外小管细胞中过表达RNF125可有效减轻炎症反应和肾纤维化。综上所述,我们的研究结果表明病理状态下RNF125的降低导致RIG-I泛素化和降解的减少,下游NF-κB信号通路的激活,炎症细胞因子的产生增加,从而促进肾纤维化的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
生理学报
生理学报 Medicine-Medicine (all)
CiteScore
1.20
自引率
0.00%
发文量
4820
期刊介绍: Acta Physiologica Sinica (APS) is sponsored by the Chinese Association for Physiological Sciences and Shanghai Institutes of Biological Sciences, Chinese Academy of Sciences (CAS), and is published bimonthly by the Science Press, China. APS publishes original research articles in the field of physiology as well as research contributions from other biomedical disciplines and proceedings of conferences and symposia of physiological sciences. Besides “Original Research Articles”, the journal also provides columns as “Brief Review”, “Rapid Communication”, “Experimental Technique”, and “Letter to the Editor”. Articles are published in either Chinese or English according to authors’ submission.
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