IL-6/GATA2/SERPINE1通路与急性肾损伤后细胞衰老的调控有关。

IF 3.9 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Frontiers in Molecular Biosciences Pub Date : 2025-02-11 eCollection Date: 2025-01-01 DOI:10.3389/fmolb.2025.1538526
Hongshuang Su, Xiaoxi Lin, Ayinuer Paredong, Congcong Yao, Yan Zhang, Mengke Geng, Yuqian Guan, Lichao Gong, Feng Jiang, Qi Lv, Songtao Shou, Heng Jin
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引用次数: 0

摘要

目的:横纹肌溶解综合征继发的急性肾损伤(AKI)是一种危及生命的并发症,其特点是发病率和死亡率都很高。近年来,细胞衰老在AKI进展中的作用越来越受到关注。我们之前的研究表明,远程缺血后适应(RIPC)可以减轻挤压损伤后缺血再灌注损伤引起的肾细胞衰老和血清白细胞介素-6 (IL-6)水平升高。本研究的目的是探讨IL-6在横纹肌溶解性AKI (RM-AKI)中的具体作用。方法:通过肌内注射甘油建立小鼠rmi - aki模型,并用肌红蛋白处理Hk-2细胞,在细胞水平上模拟rmi - aki。Tocilizumab (TCZ)是一种针对白细胞介素-6 (IL-6)受体的人源化单克隆抗体,是一种关键物质。IL-6是一种多功能细胞因子,在多种肾脏疾病的发生发展中起着至关重要的作用。它能促进炎症反应、细胞增殖、纤维化等过程。TCZ通过特异性结合IL-6受体,阻断IL-6的信号转导,对肾脏产生保护作用。此外,采用ELISA试剂盒检测IL-6水平。对肌红蛋白和托珠单抗处理的细胞进行RNA测序分析。流式细胞术检测细胞周期分布及衰老细胞百分比。采用实时定量PCR和Western blot检测SERPINE1、GATA2、p53、p21的表达水平。此外,双荧光素酶报告基因实验验证了SERPINE1和GATA2的结合作用。结果:转录组分析显示,托珠单抗治疗后,HK-2细胞中包括GATA2和SERPINE1在内的基因下调。托珠单抗在这些细胞中抑制IL-6受体导致细胞衰老的减少,伴随着细胞周期调节蛋白P53和P21 mRNA和蛋白水平的降低,同时缓解细胞周期阻滞。此外,双荧光素酶报告基因试验证实,GATA2与SERPINE1的启动子(PAI-1)结合,从而启动其转录。结论:IL-6/GATA2/SERPINE1通路介导急性肾损伤后细胞衰老,抑制IL-6可减轻aki诱导的细胞衰老,为探索新的治疗策略提供重要依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IL-6/GATA2/SERPINE1 pathway is implicated in regulating cellular senescence after acute kidney injury.

Purpose: Acute kidney injury (AKI) secondary to Rhabdomyolysis syndrome represents a life-threatening complication, characterized by notably high incidence and mortality rates. The role of cellular senescence in the progression of AKI has increasingly garnered attention in recent years. Our previous research has demonstrated that remote ischemic postconditioning (RIPC) can attenuate renal cellular senescence and elevation of serum level of interleukin-6 (IL-6) induced by ischemia-reperfusion injury following crush injury. The objective of this study is to investigate the specific role of IL-6 in Rhabdomyolysis-induced AKI (RM-AKI).

Methods: We established a mouse model of RM-AKI by intramuscular injection of glycerol and simulated RM-AKI at the cellular level by treating Hk-2 cells with myoglobin. Tocilizumab (TCZ), a humanized monoclonal antibody against the interleukin-6 (IL-6) receptor, is a key substance. IL-6, a multifunctional cytokine, plays a crucial role in the occurrence and development of various kidney diseases. It can promote inflammatory responses, cell proliferation, fibrosis, and other processes. TCZ exerts a protective effect on the kidneys by specifically binding to the IL-6 receptor and blocking the signal transduction of IL-6. Additionally, the levels of IL-6 were detected by employing ELISA kits. RNA sequencing analysis was performed on cells treated with myoglobin and tocilizumab. Flow cytometry was utilized to assess cell cycle distribution and the percentage of senescent cells. The expression levels of SERPINE1, GATA2, p53, and p21 were determined by real-time quantitative PCR and Western blot. Additionally, a dual-luciferase reporter gene assay was conducted to validate the binding effect of SERPINE1 and GATA2.

Results: Transcriptome Analysis revealed that genes including GATA2 and SERPINE1 were downregulated in HK-2 cells following tocilizumab treatment. Inhibition of the IL-6 receptor by tocilizumab in these cells led to a reduction in cellular senescence, accompanied by decreased of the cell cycle regulatory proteins P53 and P21 in mRNA and protein levels, while alleviating cell cycle arrest. Additionally, a dual-luciferase reporter assay confirmed that GATA2 binds to the promoter of SERPINE1 (PAI-1), thereby initiating its transcription.

Conclusion: The IL-6/GATA2/SERPINE1 pathway mediates cellular senescence after acute kidney injury, and inhibiting IL-6 can alleviate AKI-induced cellular senescence, providing an important basis for exploring new therapeutic strategies.

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来源期刊
Frontiers in Molecular Biosciences
Frontiers in Molecular Biosciences Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.20
自引率
4.00%
发文量
1361
审稿时长
14 weeks
期刊介绍: Much of contemporary investigation in the life sciences is devoted to the molecular-scale understanding of the relationships between genes and the environment — in particular, dynamic alterations in the levels, modifications, and interactions of cellular effectors, including proteins. Frontiers in Molecular Biosciences offers an international publication platform for basic as well as applied research; we encourage contributions spanning both established and emerging areas of biology. To this end, the journal draws from empirical disciplines such as structural biology, enzymology, biochemistry, and biophysics, capitalizing as well on the technological advancements that have enabled metabolomics and proteomics measurements in massively parallel throughput, and the development of robust and innovative computational biology strategies. We also recognize influences from medicine and technology, welcoming studies in molecular genetics, molecular diagnostics and therapeutics, and nanotechnology. Our ultimate objective is the comprehensive illustration of the molecular mechanisms regulating proteins, nucleic acids, carbohydrates, lipids, and small metabolites in organisms across all branches of life. In addition to interesting new findings, techniques, and applications, Frontiers in Molecular Biosciences will consider new testable hypotheses to inspire different perspectives and stimulate scientific dialogue. The integration of in silico, in vitro, and in vivo approaches will benefit endeavors across all domains of the life sciences.
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