转录因子
细胞生物学
生物
下调和上调
先天免疫系统
免疫系统
干扰素调节因子
抗体
受体
获得性免疫系统
干扰素
PTEN公司
锌指
信号转导
内部收益率1
转录调控
化学
抑制因子
功能(生物学)
共受体
IRF4公司
免疫学
无名指
抄写(语言学)
效应器
DNA结合蛋白
淋巴细胞
T细胞
B细胞
Ⅰ型干扰素
免疫
支架蛋白
调节器
信号转导衔接蛋白
作者
Ziyin Zhang,Nanshu Xiang,Qian Liu,Yanfeng Li,Linhua Wang,Xinpu Yang,Ju Liu,Lichen Zhang,Liaoxun Lu,Yinming Liang,Lu Yang,Xiaopeng Qi,Chaohong Liu
标识
DOI:10.1038/s41392-026-02575-x
摘要
The development and function of B lymphocytes require the precise integration of signaling, transcriptional networks, and metabolic programs. While interferon (IFN)-inducible proteins can bridge innate and adaptive immunity, their roles in B cells remain poorly defined. Here, we identified RNF213, a giant IFN-inducible RING finger E3 ligase, as a key orchestrator of B-cell biology. Mice lacking Rnf213 exhibited defective splenic B-cell development, impaired B-cell receptor (BCR) signaling, and compromised metabolic activity. Mechanistically, RNF213 targeted the transcription factor SPIB for proteasomal degradation via K11-linked ubiquitylation. In Rnf213‑deficient B cells, stabilized SPIB transcriptionally upregulated Pik3c3, thereby increasing phosphatidylinositol 3-phosphate (PI3P) production. Excess PI3P recruited PTEN to early endosomes, where PTEN hydrolyzed phosphatidylinositol-3,4,5-trisphosphate (PIP3) and attenuated AKT-mTOR signaling. Strikingly, both genetic deletion of Spib and pharmacological inhibition of PIK3C3 restored AKT-mTOR activation, metabolic fitness, and B-cell development in Rnf213-null mice. Furthermore, Rnf213 deficiency impaired both T-independent and T-dependent antibody responses, highlighting its critical role in humoral immunity. Overall, our work reveals a novel ubiquitin-dependent circuit that links interferon signaling to the transcriptional and metabolic control of B-cell homeostasis. This study also establishes RNF213 as a crucial bridge between innate immune sensing and the dynamic regulation of lymphocyte development.
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