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首页> 外文期刊>Drug Design, Development and Therapy >Ubiquitin-Fold Modifier-1 Participates in the Diabetic Inflammatory Response by Regulating NF-κB p65 Nuclear Translocation and the Ubiquitination and Degradation of IκBα
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Ubiquitin-Fold Modifier-1 Participates in the Diabetic Inflammatory Response by Regulating NF-κB p65 Nuclear Translocation and the Ubiquitination and Degradation of IκBα

机译:泛素折叠改性剂-1通过调节NF-κBP65核转位和IκBα的泛素化和降解来参与糖尿病炎症反应

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Background: Ubiquitin-fold modifier-1 (Ufm1) is a recently identified ubiquitin-like protein. We previously confirmed that Ufm1 expression was increased in diabetic mice. However, its role in the development of diabetes remains undefined. Methods: Lentivirus-mediated gene knockdown and overexpression techniques were used to observe the effect of Ufm1 on the expression of inflammatory factors, adhesion molecules and chemokines, as well as the transcriptional activity of nuclear factor kappa-B (NF-κB) in macrophages. Western blot and immunofluorescence analyses were used to analyse the mechanism by which Ufm1 affects the transcriptional activity of NF-κB. Finally, the effects of Ufm1 on inflammation and pancreatic, renal and myocardial damage were observed in db/db mice. Results: Knockdown of Ufm1 by lentivirus shRNA targeting Ufm1 (Lv-shUfm1) led to decreased secretion of IL-6, IL-1β, ICAM-1, VCAM-1, MCP-1 and CXCL2 in RAW264.7 cells that were exposed to LPS and TNF-α, while lentiviral overexpression of Ufm1 (Lv-Ufm1) caused the opposite effect. Interestingly, further investigation indicated that Ufm1 induced NF-κB p65 nuclear translocation in RAW264.7 cells via increasing the ubiquitination and degradation of IκBα. In an in vivo experiment, pretreatment of db/db mice with Lv-shUfm1 reduced the mRNA levels of TNF-α, IL-6, IL-1β, ICAM-1, VCAM-1, MCP-1 and CXCL2 in resident peritoneal macrophages (RPMs) and decreased the plasma levels of TNF-α, IL-6, IL-1β, ICAM-1, VCAM-1, MCP-1 and CXCL2. Additionally, in Lv-Ufm1-treated mice, the inverse results were observed. Following treatment with Lv-shUfm1 and Lv-Ufm1, NF-κB p65 nuclear translocation in RPMs was decreased and increased, respectively. Importantly, we observed that Lv-shUfm1 injection led to a decrease in plasma glycaemia, a reduction in urinary albuminuria and cardiomyocyte hypertrophy and an improvement in the histopathological appearance of pancreatic, kidney and myocardial tissue. Pretreatment of the mice with Lv-shUfm1 inhibited macrophage infiltration in the pancreas, kidney and myocardial tissue. Conclusion: Our data elucidate a new biological function of Ufm1 that mediates inflammatory responses. Ufm1-mediated p65 nuclear translocation occurs by modulating the ubiquitination and degradation of IκBα. Moreover, downregulating Ufm1 is an effective strategy to prevent the development of type 2 diabetes and its complications.
机译:背景:泛素折叠改性剂-1(UFM1)是最近鉴定的泛素样蛋白。我们之前证实糖尿病小鼠中的UFM1表达增加。然而,它在糖尿病发展中的作用仍然是未定义的。方法:使用慢病毒介导的基因敲低和过表达技术用于观察UFM1对巨噬细胞中核因子Kappa-B(NF-κB)表达的影响。用于分析UFM1影响NF-κB的转录活性的机制来分析蛋白质印迹和免疫荧光分析。最后,在DB / DB小鼠中观察到UFM1对炎症和胰腺,肾和心肌损伤的影响。结果:靶向UFM1(LV-SHUFM1)的慢病毒shRNA敲低UFM1导致IL-6,IL-1β,ICAM-1,VCAM-1,MCP-1和RAW264.7细胞中的分泌减少LPS和TNF-α,而UFM1(LV-UFM1)的慢病毒过表达引起相反的效果。有趣的是,进一步的研究表明,通过增加IκBα的泛素化和降解,UFM1在Raw264.7细胞中诱导NF-κBP65核易位。在体内实验中,具有LV-Shufm1的DB / DB小鼠的预处理将TNF-α,IL-6,IL-1β,ICAM-1,VCAM-1,MCP-1和CXCL2中的mRNA水平降低了常驻腹膜巨噬细胞(RPMS)并降低TNF-α,IL-6,IL-1β,ICAM-1,VCAM-1,MCP-1和CXCL2的血浆水平。另外,在LV-UFM1处理的小鼠中,观察到逆结果。用LV-Shufm1和LV-UFM1处理后,RPMS中的NF-κBP65核转位分别降低,增加。重要的是,我们观察到LV-Shufm1注射导致血浆糖类血症的降低,尿蛋白尿和心肌细胞肥大的降低以及胰腺,肾和心肌组织的组织病理学外观的改善。用LV-SHUFM1预处理小鼠抑制胰腺,肾和心肌组织中的巨噬细胞浸润。结论:我们的数据阐明了UFM1的新生物功能,介导炎症反应。通过调节IκBα的泛素化和降解,通过调节ufm1介导的p65核转移。此外,下调UFM1是预防2型糖尿病及其并发症的有效策略。

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