Circ_001653通过招募BUD13来调节KEAP1/NRF2/HO-1信号通路,从而缓解脓毒症相关急性肾损伤

Xinxin Li, Wei Zhou, Jianjun Chen, Liangliang Zhou, Yingbing Li, Xufeng Wu, Xia Peng
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引用次数: 0

摘要

肾脏在脓毒症期间异常脆弱,经常导致脓毒症相关急性肾损伤(SA-AKI),这种情况不仅会增加发病率,还会显著提高脓毒症相关死亡率。以前曾有报道称环状 RNA circ_001653 在 SA-AKI 患者血清中上调,但 circ_001653 在 SA-AKI 中的作用和内在机制仍不清楚。本研究旨在探讨circ_001653在SA-AKI发病机制中的功能作用和分子机制。我们将 LPS 刺激的 HK-2 细胞和结扎盲肠(CLP)诱导的大鼠作为 SA-AKI 的体内外模型。采用 qRT-PCR 和 western 印迹法测定目标基因的表达水平。检测败血症小鼠的肾功能(BUN、sCr、uNGAL 和 uKIM-1)和肾脏病理变化。TUNEL和EdU检测用于测量体外细胞凋亡和增殖率。DCFH-DA染色用于检测体外和体内的ROS水平。氧化应激标志物(SOD、GSH-Px、MDA 和 SOD)和炎症标志物(IL-1β、IL-6 和 TNF-α)在体外和体内均使用商业试剂盒进行测定。此外,研究人员还进行了功能损益分析和机理实验,以探讨circ_001653在SA-AKI发病机制中的调控作用。数据显示,circ_001653在LPS刺激的HK-2细胞和CLP诱导的大鼠肾组织中高表达,且主要定位于细胞质中。值得注意的是,沉默circ_001653可减少HK-2细胞和大鼠肾组织的细胞凋亡,减轻氧化应激和炎症反应,从而缓解SA-AKI。从机理上讲,研究发现circ_001653通过招募BUD13激活KEAP1/Nrf2/HO-1信号通路来缓解SA-AKI。总之,我们的研究首次揭示了脓毒症相关性 AKI 中 circ_001653 的表达升高,而下调 circ_001653 可以通过减少细胞凋亡、炎症和氧化应激有效缓解 AKI。从机理上讲,circ_001653 是通过招募 BUD13 激活 KEAP1/Nrf2/HO-1 信号通路而发挥其作用的。这些发现表明,circ_001653 是脓毒症相关性 AKI 药物开发的潜在治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circ_001653 alleviates sepsis associated-acute kidney injury by recruiting BUD13 to regulate KEAP1/NRF2/HO-1 signaling pathway
The kidney is exceptionally vulnerable during sepsis, often resulting in sepsis-associated acute kidney injury (SA-AKI), a condition that not only escalates morbidity but also significantly raises sepsis-related mortality rates. Circular RNA circ_001653 has been previously reported to be upregulated in the serum of SA-AKI patients, while the role and underlying mechanism of circ_001653 in SA-AKI remains unknown. In this study, we aimed to explore the functional role and the molecular mechanism of circ_001653 in the pathogenesis of SA-AKI. LPS-stimulated HK-2 cells and ligation and perforation of cecum (CLP)-induced rats were used as in vitro and in vivo models of SA-AKI. The target gene expression levels were measured using qRT-PCR and western blot. Renal function (BUN, sCr, uNGAL, and uKIM-1), and renal pathological changes were detected in septic mice. TUNEL and EdU assays were conducted to measure apoptosis and proliferation rates in vitro. DCFH-DA staining was used to detect ROS levels in vitro and in vivo. Oxidative stress markers (SOD, GSH-Px, MDA, and SOD), and inflammation markers (IL-1β, IL-6, and TNF-α) were determined using commercial kits both in vitro and in vivo. Additionally, gain-and-loss-of-function assays and mechanistic experiments were conducted to explore the regulatory role of circ_001653 in SA-AKI pathogenesis. Data showed that circ_001653 expression was high in LPS-stimulated HK-2 cells and CLP-induced rat renal tissue and was mainly localized in the cytoplasm. Notably, circ_001653 silencing alleviated SA-AKI by reducing apoptosis and alleviating oxidative stress and inflammation in HK-2 cells and renal tissue of rats. Mechanistically, it was found that circ_001653 alleviated SA-AKI by recruiting BUD13 to activate the KEAP1/Nrf2/HO-1 signaling pathway. To summarize, our study is the first to reveal elevated expression of circ_001653 in sepsis-associated AKI, and its downregulation effectively attenuates AKI by reducing apoptosis, inflammation, and oxidative stress. Mechanistically, circ_001653 exerts its effects by recruiting BUD13 to activate the KEAP1/Nrf2/HO-1 signaling pathway. These findings suggest circ_001653 as a potential therapeutic target for the drug development of sepsis-associated AKI.
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