神经炎症
促炎细胞因子
小胶质细胞
认知功能衰退
神经退行性变
转录因子
车站3
脱氮酶
神经科学
细胞生物学
转录组
调节器
细胞因子
炎症
信号转导
泛素
化学
肿瘤坏死因子α
转录调控
神经胶质
免疫学
癌症研究
基因表达调控
疾病
生物
中枢神经系统
医学
氧化应激
NFKB1型
认知缺陷
作者
Luyao Li,Hao Tang,Qin Yu,Yuyang Zhang,Binglu Shi,Ying Kong,Leiyu Xu,Jingjing Shao,Chenghong Hu,Lingyu She,Zhe Wang,Haiyi Chen,A. V. Samorodov,Gang Cao,Xia Zhao,Yi Wang
标识
DOI:10.1002/advs.202523043
摘要
Neuroinflammation driven by microglial activation is a defining feature of Alzheimer's disease (AD), yet the molecular mechanisms sustaining this proinflammatory state remain unclear. Here, we identify the deubiquitinase OTUD7B as a critical regulator of microglial activation and AD pathology. OTUD7B expression was markedly elevated in microglia from AD mouse models and human patient datasets. Genetic ablation of OTUD7B markedly attenuated microglial activation and cytokine release, alleviated neuronal injury, and improved cognitive performance in AD mice. Mechanistically, OTUD7B directly interacted with STAT3 and removed K48-linked ubiquitin chains at lysine 283, thereby stabilizing STAT3, promoting its nuclear translocation, and enhancing transcription of proinflammatory mediators. Integrative transcriptomic analysis revealed that OTUD7B deficiency suppressed proinflammatory transcriptional programs in microglia. Together, these findings uncover an OTUD7B-STAT3 signaling axis that sustains microglial-driven neuroinflammation and identify OTUD7B as a potential therapeutic target for mitigating neurodegenerative pathology in AD.
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