The interaction between RIPK1 and FADD controls perinatal lethality and inflammation

杀伤力 时尚 裂谷1 炎症 医学 生物 细胞生物学 癌症研究 坏死性下垂 细胞凋亡 遗传学 免疫学 程序性细胞死亡 半胱氨酸蛋白酶
作者
Diego A. Rodríguez,Bart Tummers,Jeremy J.P. Shaw,Giovanni Quarato,Ricardo Weinlich,James G. Cripps,Patrick Fitzgerald,Laura J. Janke,S. William Pelletier,Jeremy Chase Crawford,Douglas R. Green
出处
期刊:Cell Reports [Elsevier]
卷期号:43 (6): 114335-114335
标识
DOI:10.1016/j.celrep.2024.114335
摘要

Perturbation of the apoptosis and necroptosis pathways critically influences embryogenesis. Receptor-associated protein kinase-1 (RIPK1) interacts with Fas-associated via death domain (FADD)-caspase-8-cellular Flice-like inhibitory protein long (cFLIPL) to regulate both extrinsic apoptosis and necroptosis. Here, we describe Ripk1-mutant animals (Ripk1R588E [RE]) in which the interaction between FADD and RIPK1 is disrupted, leading to embryonic lethality. This lethality is not prevented by further removal of the kinase activity of Ripk1 (Ripk1R588E K45A [REKA]). Both Ripk1RE and Ripk1REKA animals survive to adulthood upon ablation of Ripk3. While embryonic lethality of Ripk1RE mice is prevented by ablation of the necroptosis effector mixed lineage kinase-like (MLKL), animals succumb to inflammation after birth. In contrast, Mlkl ablation does not prevent the death of Ripk1REKA embryos, but animals reach adulthood when both MLKL and caspase-8 are removed. Ablation of the nucleic acid sensor Zbp1 largely prevents lethality in both Ripk1RE and Ripk1REKA embryos. Thus, the RIPK1-FADD interaction prevents Z-DNA binding protein-1 (ZBP1)-induced, RIPK3-caspase-8-mediated embryonic lethality, affected by the kinase activity of RIPK1.
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