A dominant autoinflammatory disease caused by non-cleavable variants of RIPK1

裂谷1 促炎细胞因子 肿瘤坏死因子α 炎症 细胞生物学 化学 生物 癌症研究 免疫学 生物化学 坏死性下垂 程序性细胞死亡 细胞凋亡
作者
Panfeng Tao,Jinqiao Sun,Zheming Wu,Shihao Wang,Jun Wang,Wanjin Li,Heling Pan,Renkui Bai,Jiahui Zhang,Ying Wang,Pui Y. Lee,Wenjing Ying,Qinhua Zhou,Jia Hou,Wenjie Wang,Bijun Sun,Mi‐Jin Yang,Danru Liu,Ran Fang,Huan Han,Zhao‐hui Yang,Xin Huang,Haibo Li,Natalie Deuitch,Yuan Zhang,Dilan Dissanayake,Katrina Haude,Kirsty McWalter,Chelsea Roadhouse,Jennifer MacKenzie,Ronald M. Laxer,Ivona Aksentijevich,Xiaomin Yu,Xiaochuan Wang,Junying Yuan,Qing Zhou
出处
期刊:Nature [Nature Portfolio]
卷期号:577 (7788): 109-114 被引量:212
标识
DOI:10.1038/s41586-019-1830-y
摘要

Activation of RIPK1 controls TNF-mediated apoptosis, necroptosis and inflammatory pathways1. Cleavage of human and mouse RIPK1 after residues D324 and D325, respectively, by caspase-8 separates the RIPK1 kinase domain from the intermediate and death domains. The D325A mutation in mouse RIPK1 leads to embryonic lethality during mouse development2,3. However, the functional importance of blocking caspase-8-mediated cleavage of RIPK1 on RIPK1 activation in humans is unknown. Here we identify two families with variants in RIPK1 (D324V and D324H) that lead to distinct symptoms of recurrent fevers and lymphadenopathy in an autosomal-dominant manner. Impaired cleavage of RIPK1 D324 variants by caspase-8 sensitized patients' peripheral blood mononuclear cells to RIPK1 activation, apoptosis and necroptosis induced by TNF. The patients showed strong RIPK1-dependent activation of inflammatory signalling pathways and overproduction of inflammatory cytokines and chemokines compared with unaffected controls. Furthermore, we show that expression of the RIPK1 mutants D325V or D325H in mouse embryonic fibroblasts confers not only increased sensitivity to RIPK1 activation-mediated apoptosis and necroptosis, but also induction of pro-inflammatory cytokines such as IL-6 and TNF. By contrast, patient-derived fibroblasts showed reduced expression of RIPK1 and downregulated production of reactive oxygen species, resulting in resistance to necroptosis and ferroptosis. Together, these data suggest that human non-cleavable RIPK1 variants promote activation of RIPK1, and lead to an autoinflammatory disease characterized by hypersensitivity to apoptosis and necroptosis and increased inflammatory response in peripheral blood mononuclear cells, as well as a compensatory mechanism to protect against several pro-death stimuli in fibroblasts.
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