次氯酸对细胞外组蛋白的氧化修饰可调节其诱导β细胞功能障碍的能力。

IF 8.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Free Radical Biology and Medicine Pub Date : 2025-03-16 Epub Date: 2025-02-15 DOI:10.1016/j.freeradbiomed.2025.02.018
Clara Skjølberg , Laura Degani , Inga Sileikaite-Morvaközi, Clare L. Hawkins
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引用次数: 0

摘要

组蛋白是核蛋白,通过与DNA结合的能力在染色质组装和基因表达调控中发挥关键作用。组蛋白也可以由于细胞坏死或中性粒细胞(NETs)和其他免疫细胞的细胞外陷阱释放而从细胞中释放出来。由于组蛋白的细胞毒性和促进炎症的能力,组蛋白在细胞外环境中的存在对包括糖尿病在内的许多疾病都有影响。net还含有髓过氧化物酶,这是一种产生次氯酸(HOCl)的防御酶,可以杀死病原体,但也容易破坏宿主蛋白质。在这项研究中,我们用胰腺β细胞模型检测了HOCl修饰和未修饰组蛋白的反应性。β-细胞暴露于组蛋白导致代谢活性丧失和细胞凋亡和坏死的结合死亡。用肿瘤坏死因子α和白细胞介素1β预处理β细胞后,其毒性增强。组蛋白上调内质网(ER)应激基因,包括促凋亡转录因子CHOP。也有证据表明细胞氧化还原环境的改变和抗氧化基因表达的上调。然而,观察到胰岛素相关基因和胰岛素的下调。有趣的是,用HOCl修饰组蛋白降低了它们的毒性并改变了所观察到的基因表达模式,并且观察到胰岛素相关基因的表达进一步减少。这些发现可能与2型糖尿病的发展有关,在2型糖尿病中,低度炎症有利于NET释放,导致循环中组蛋白升高。
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Oxidative modification of extracellular histones by hypochlorous acid modulates their ability to induce β-cell dysfunction
Histones are nuclear proteins that play a key role in chromatin assembly and regulation of gene expression by their ability to bind to DNA. Histones can also be released from cells owing to necrosis or extracellular trap release from neutrophils (NETs) and other immune cells. The presence of histones in the extracellular environment has implications for many pathologies, including diabetes mellitus, owing to the cytotoxic nature of these proteins, and their ability to promote inflammation. NETs also contain myeloperoxidase, a defensive enzyme that produces hypochlorous acid (HOCl), to kill pathogens, but also readily damages host proteins. In this study, we examined the reactivity of histones with and without HOCl modification, with a pancreatic β-cell model. Exposure of β-cells to histones resulted in a loss of metabolic activity and cell death by a combination of apoptosis and necrosis. This toxicity was increased on pretreatment of the β-cells with tumour necrosis factor α and interleukin 1β. Histones upregulated endoplasmic reticulum (ER) stress genes, including the pro-apoptotic transcription factor CHOP. There was also evidence for alterations to the cellular redox environment and upregulation of antioxidant gene expression. However, downregulation of insulin-associated genes and insulin was observed. Interestingly, modification of the histones with HOCl reduced their toxicity and altered the patterns of gene expression observed, and a further decrease in the expression of insulin-associated genes was observed. These findings could be relevant to the development of Type 2 diabetes, where low-grade inflammation favours NET release, resulting in elevated histones in the circulation.
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来源期刊
Free Radical Biology and Medicine
Free Radical Biology and Medicine 医学-内分泌学与代谢
CiteScore
14.00
自引率
4.10%
发文量
850
审稿时长
22 days
期刊介绍: Free Radical Biology and Medicine is a leading journal in the field of redox biology, which is the study of the role of reactive oxygen species (ROS) and other oxidizing agents in biological systems. The journal serves as a premier forum for publishing innovative and groundbreaking research that explores the redox biology of health and disease, covering a wide range of topics and disciplines. Free Radical Biology and Medicine also commissions Special Issues that highlight recent advances in both basic and clinical research, with a particular emphasis on the mechanisms underlying altered metabolism and redox signaling. These Special Issues aim to provide a focused platform for the latest research in the field, fostering collaboration and knowledge exchange among researchers and clinicians.
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