HMGB1
生物
细胞生物学
脱氮酶
核心
泛素
自噬
细胞核
程序性细胞死亡
核蛋白
细胞培养
细胞
作者
Tao Hu,Peng Cui,Xuan Zhao,Wei Wang,Yingdong Ma,X H Hu,Haitao Zhang,Zuoran Fan,D Wang,Qingyang Huang,Fumin Pan,Haixia Huang,C L Cui,Xiaolong Chen,Yuluo Rong,Shibao Lu
出处
期刊:Autophagy
[Taylor & Francis]
日期:2026-05-22
卷期号:: 1-21
标识
DOI:10.1080/15548627.2026.2679172
摘要
Ferroptosis contributes to intervertebral disc degeneration (IVDD), yet its upstream regulatory mechanisms in nucleus pulposus cells (NPCs) remain unclear. Here, we identify a novel UCHL3-HMGB1-NCOA4 signaling axis that drives NPC ferroptosis. Transcriptomic and clinical analyses reveal that UCHL3 is upregulated in degenerative discs, with its expression correlating positively with both IVDD severity and ferroptosis markers. Mechanistically, UCHL3 deubiquitinates and stabilizes HMGB1 by cleaving Lys48-linked polyubiquitin chains, thereby promoting the accumulation of cytoplasmic HMGB1. This stabilized HMGB1 activates NCOA4-mediated ferritinophagy, initiating ferroptosis. Silencing UCHL3 or NCOA4 mitigates these effects. Furthermore, a polydopamine-based nanoplatform (PDA@si-UCHL3) achieves dual therapeutic action, silencing UCHL3 while scavenging ROS and chelating iron, which effectively inhibits ferroptosis and alleviates IVDD in rats. These findings establish UCHL3 as a pivotal regulator of NPC ferroptosis and highlight PDA@si-UCHL3 as a promising therapeutic strategy for IVDD.
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