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 Rnf213âdeficient 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.
Ring finger protein 213 regulates B-cell receptor signaling, metabolism, and development in B lymphocytes.
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作者:Zhang Ziyin, Xiang Nanshu, Liu Qian, Li Yanfeng, Wang Linhua, Yang Xinpu, Liu Ju, Zhang Lichen, Lu Liaoxun, Liang Yinming, Yang Lu, Qi Xiaopeng, Liu Chaohong
| 期刊: | Signal Transduction and Targeted Therapy | 影响因子: | 52.700 |
| 时间: | 2026 | 起止号: | 2026 Feb 18; 11(1):59 |
| doi: | 10.1038/s41392-026-02575-x | ||
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