Hu Jiapeng, Ding Ruiwei, Liu Shaozhuang, Wang Jia, Li Jianjun, Shang Yunxiao
Department of Pediatrics, Shengjing Hospital of China Medical University, Shenyang 110004, China.
Pediatric Department, Qingdao Women and Children's Hospital, Qingdao 266000, China.
iScience. 2023 Jul 27;26(8):107503. doi: 10.1016/j.isci.2023.107503. eCollection 2023 Aug 18.
Asthma is a global chronic airway disease. The expression and role of RNF125, an E3 ubiquitin ligase, in asthma remain uncertain. In this study, we revealed that RNF125 was downregulated in the bronchial epithelium of mice and patients with asthma. hypermethylation was responsible for the low expression of RNF125 in primary airway epithelial cells of mice treated with OVA. Moreover, we demonstrated that RNF125 could attenuate autophagy, oxidative stress, and protect epithelial barrier and . Additionally, we identified HMGB1 as a substrate of RNF125, which interacted with the HMG B-box domain of HMGB1 and induced degradation via the ubiquitin proteasome system, reducing autophagy and oxidative stress. Overall, our findings elucidated that hypermethylation of reduced its expression, which promoted autophagy-induced oxidative stress in asthma by increasing HMGB1 stability. These findings offer a theoretical and experimental basis for the pathogenesis of asthma.
哮喘是一种全球性的慢性气道疾病。E3泛素连接酶RNF125在哮喘中的表达及作用仍不明确。在本研究中,我们发现RNF125在小鼠和哮喘患者的支气管上皮中表达下调。高甲基化导致用卵清蛋白处理的小鼠原代气道上皮细胞中RNF125表达降低。此外,我们证明RNF125可减弱自噬、氧化应激并保护上皮屏障。另外,我们鉴定出HMGB1是RNF125的底物,其与HMGB1的HMG B盒结构域相互作用并通过泛素蛋白酶体系统诱导降解,从而减少自噬和氧化应激。总体而言,我们的研究结果阐明,RNF125的高甲基化降低了其表达,通过增加HMGB1的稳定性促进了哮喘中自噬诱导的氧化应激。这些发现为哮喘的发病机制提供了理论和实验依据。