Ubiquitin-binding domain in ABIN1 is critical for regulating cell death and inflammation during development

时尚 裂谷1 坏死性下垂 程序性细胞死亡 泛素 细胞生物学 生物 死亡域 炎症 半胱氨酸蛋白酶8 泛素连接酶 癌症研究 细胞凋亡 半胱氨酸蛋白酶 免疫学 遗传学 基因
作者
Ming Li,Yongbo Liu,Chengxian Xu,Qun Zhao,Jianling Liu,Mingyan Xing,Xiaoming Li,Haiwei Zhang,Xiaoxia Wu,Lingxia Wang,Yangjing Ou,Xuanhui Wu,Xiaoming Zhao,Han Liu,Lin Qiu,Fang Li,Jinbao Li,Wuwei Rong,Yan Luo,Jiangshan Deng,Xiuzhe Wang,Zhichao Wang,Yang Zhao,Ankang Lv,Qingfeng Li,Haibing Zhang
出处
期刊:Cell Death & Differentiation [Springer Nature]
卷期号:29 (10): 2034-2045 被引量:4
标识
DOI:10.1038/s41418-022-00994-1
摘要

ABIN1 is a polyubiquitin-binding protein known to regulate NF-κB activation and cell death signaling. Mutations in Abin1 can cause severe immune diseases in human, such as psoriasis, systemic lupus erythematosus, and systemic sclerosis. Here, we generated mice that disrupted the ubiquitin-binding domain of ABIN1 (Abin1UBD/UBD) died during later embryogenesis owing to TNFR1-mediated cell death, similar to Abin1-/- mice. Abin1UBD/UBD cells were rendered sensitive to TNF-α-induced apoptosis and necroptosis as the inhibition of ABIN1UBD and A20 recruitment to the TNF-RSC complex leads to attenuated RIPK1 deubiquitination. Accordingly, the embryonic lethality of Abin1UBD/UBD mice was rescued via crossing with RIPK1 kinase-dead mice (Ripk1K45A/K45A) or the co-deletion of Ripk3 and one allele of Fadd, but not by the loss of Ripk3 or Mlkl alone. Unexpectedly, Abin1UBD/UBD mice with the co-deletion of Ripk3 and both Fadd alleles died at E14.5. This death was caused by spontaneous RIPK1 ubiquitination-dependent multiple inflammatory cytokines over production and could be rescued by the co-deletion of Ripk1 or Tnfr1 combined with Ifnar. Collectively, these data demonstrate the importance of the ABIN1 UBD domain, which mediates the ABIN1-A20 axis, at limiting RIPK1 activation-dependent cell death during embryonic development. Furthermore, our findings reveal a previously unappreciated ubiquitin pathway that regulates RIPK1 ubiquitination by FADD/Casp8 to suppress spontaneous IKKε/TBK1 activation.

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