泛素
轴突
细胞生物学
神经损伤
坐骨神经
轴突引导
化学
泛素连接酶
HEK 293细胞
蛋白酶体
生物
体内
轴浆运输
神经科学
轴突切开术
神经突
基因剔除小鼠
自噬
生物化学
泛素结合酶
领域(数学分析)
分子生物学
蛋白质降解
作者
Wenjing Long,Shunyi Li,Qiangqiang Wang,Wenkai Yue,Yanbin Fu,Haiqiong Wang,Mingsheng Jiang,Xianyan Hu,Yunxia Li,Jihong Cui,Ang Li,Yaoyang Zhang,Zai-Rong Zhang,Yanshan Fang
标识
DOI:10.1083/jcb.202501072
摘要
NMNAT2 is an essential but labile protein required for axon integrity. It is rapidly degraded after nerve injury, promoting axon degeneration. However, the mechanisms regulating NMNAT2 ubiquitination and turnover in neurons remain unclear. In this study, we identify the F-box protein FBXO21 as an NMNAT2-binding protein, and its deficiency confers axonal protection via increasing NMNAT2 abundance. FBXO21 recruits SKP1, CUL1, and RBX1 to form an SCFFBXO21 complex, which promotes NMNAT2 ubiquitination in vivo and in vitro. SCFFBXO21 ubiquitinates NMNAT2 at K155 within an isoform-specific targeting and interaction domain of the family of NMNATs, which underlies the unique labile nature of NMNAT2. The ubiquitination-deficient NMNAT2-K155R exhibits substantially reduced protein turnover and enhanced axon-protective capacity. Finally, in Fbxo21 knockout mice, NMNAT2 levels are markedly increased and the survival of injured sciatic nerves is significantly prolonged. Collectively, our findings reveal a crucial role of FBXO21 in axon degeneration, highlighting the SCFFBXO21 complex as a potential target for modulating NMNAT2-dependent axon survival.
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