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长链非编码 RNA GAS5 通过抑制 miR-579-3p 激活 SIRT1/PGC-1α/Nrf2 信号通路减少脓毒症相关性肾损伤细胞焦亡。

LncRNA GAS5 inhibits miR-579-3p to activate SIRT1/PGC-1α/Nrf2 signaling pathway to reduce cell pyroptosis in sepsis-associated renal injury.

机构信息

Department of Critical Care Medicine, Affiliated Chenzhou Hospital, Southern Medical University (The First People's Hospital of Chenzhou), Chenzhou, People's Republic of China.

出版信息

Am J Physiol Cell Physiol. 2021 Jul 1;321(1):C117-C133. doi: 10.1152/ajpcell.00394.2020. Epub 2021 May 19.

Abstract

Sepsis is a life-threatening condition that can lead to several organ failures including kidney. In this study, we investigated the roles of GAS5 and miR-579-3p in regulating cell pyroptosis in the sepsis-induced renal injury model. Lipopolysaccharide (LPS) treatment or cecal ligation and puncture (CLP) surgery was used to create the in vitro and in vivo sepsis-induced renal injury model. The interactions between GAS5 and miR-579-3p, and miR-579-3p and SIRT1 were determined by bioinformatic prediction, luciferase reporter assay, and RIP assay. In vitro cell pyroptosis was examined by flow cytometry marked with active caspase-1 and PI. The protein levels of IL-1β and IL-18 induced by cell pyroptosis were quantified using ELISA assay. In vivo renal injuries were evaluated with HE and TUNEL stainings, bacterial load in serum and creatinine, and blood urea nitrogen content analyses. Expression levels of GAS5, miR-579-3p, pyroptosis, and SIRT1/PGC-1a/Nrf2 pathway-related molecules were evaluated by qRT-PCR or Western blot. GAS5 and SIRT1 were downregulated, whereas miR-579-3p was upregulated in in vitro and in vivo sepsis-induced renal injury models. GAS5 negatively and directly regulated miR-579-3p to reduce cell pyroptosis via the activation of SIRT1/PGC-1a/Nrf2 pathway. In addition, miR-579-3p suppressed PGC-1a/Nrf2 pathway to induce cell pyroptosis by directly targeting SIRT1. What's more, overexpression of GAS5, or knockdown of miR-579-3p, enhanced SIRT1 expression that led to the improved survival rate, reduced the weight loss, and relieved renal injuries in septic mice. Overexpression of GAS5 demonstrated protective effects against sepsis-induced renal injury via downregulating miR-579-3p and activating SIRT1/PGC-1α/Nrf2 pathway to inhibit cell pyroptosis.

摘要

脓毒症是一种危及生命的疾病,可导致多个器官衰竭,包括肾脏。在这项研究中,我们研究了 GAS5 和 miR-579-3p 在调节脓毒症诱导的肾损伤模型中细胞焦亡中的作用。使用脂多糖(LPS)处理或盲肠结扎和穿刺(CLP)手术建立体外和体内脓毒症诱导的肾损伤模型。通过生物信息学预测、荧光素酶报告基因测定和 RIP 测定确定 GAS5 和 miR-579-3p 之间以及 miR-579-3p 和 SIRT1 之间的相互作用。通过流式细胞术标记活性 caspase-1 和 PI 检测体外细胞焦亡。使用 ELISA 测定法定量检测细胞焦亡诱导的 IL-1β 和 IL-18 的蛋白水平。通过 HE 和 TUNEL 染色、血清和肌酐中的细菌载量以及血尿素氮含量分析评估体内肾损伤。通过 qRT-PCR 或 Western blot 评估 GAS5、miR-579-3p、细胞焦亡和 SIRT1/PGC-1a/Nrf2 通路相关分子的表达水平。在体外和体内脓毒症诱导的肾损伤模型中,GAS5 下调,而 miR-579-3p 上调。GAS5 通过负向直接调节 miR-579-3p 来减少细胞焦亡,从而激活 SIRT1/PGC-1a/Nrf2 通路。此外,miR-579-3p 通过直接靶向 SIRT1 抑制 PGC-1a/Nrf2 通路诱导细胞焦亡。更重要的是,过表达 GAS5 或敲低 miR-579-3p 可增强 SIRT1 表达,从而提高脓毒症小鼠的存活率,减少体重减轻并减轻肾损伤。过表达 GAS5 通过下调 miR-579-3p 并激活 SIRT1/PGC-1α/Nrf2 通路抑制细胞焦亡对脓毒症诱导的肾损伤发挥保护作用。

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