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FADD prevents RIP3-mediated epithelial cell necrosis and chronic intestinal inflammation

时尚 潘尼斯电池 坏死性下垂 炎症性肠病 肿瘤坏死因子α 细胞凋亡 裂谷1 半胱氨酸蛋白酶8 肠上皮 免疫系统 炎症 癌症研究 程序性细胞死亡 肠粘膜 生物 免疫学 细胞生物学 死亡域 医学 上皮 半胱氨酸蛋白酶 病理 内科学 内分泌学 小肠 疾病 生物化学 遗传学
作者
Patrick-Simon Welz,Andy Wullaert,Katerina Vlantis,Vangelis Kondylis,Vanesa Fernández‐Majada,Maria Ermolaeva,Petra Kirsch,Anja Sterner‐Kock,Geert Loo,Manolis Pasparakis
出处
期刊:Nature [Nature Portfolio]
卷期号:477 (7364): 330-334 被引量:597
标识
DOI:10.1038/nature10273
摘要

Intestinal immune homeostasis depends on a tightly regulated cross talk between commensal bacteria, mucosal immune cells and intestinal epithelial cells (IECs). Epithelial barrier disruption is considered to be a potential cause of inflammatory bowel disease; however, the mechanisms regulating intestinal epithelial integrity are poorly understood. Here we show that mice with IEC-specific knockout of FADD (FADD(IEC-KO)), an adaptor protein required for death-receptor-induced apoptosis, spontaneously developed epithelial cell necrosis, loss of Paneth cells, enteritis and severe erosive colitis. Genetic deficiency in RIP3, a critical regulator of programmed necrosis, prevented the development of spontaneous pathology in both the small intestine and colon of FADD(IEC-KO) mice, demonstrating that intestinal inflammation is triggered by RIP3-dependent death of FADD-deficient IECs. Epithelial-specific inhibition of CYLD, a deubiquitinase that regulates cellular necrosis, prevented colitis development in FADD(IEC-KO) but not in NEMO(IEC-KO) mice, showing that different mechanisms mediated death of colonic epithelial cells in these two models. In FADD(IEC-KO) mice, TNF deficiency ameliorated colon inflammation, whereas MYD88 deficiency and also elimination of the microbiota prevented colon inflammation, indicating that bacteria-mediated Toll-like-receptor signalling drives colitis by inducing the expression of TNF and other cytokines. However, neither CYLD, TNF or MYD88 deficiency nor elimination of the microbiota could prevent Paneth cell loss and enteritis in FADD(IEC-KO) mice, showing that different mechanisms drive RIP3-dependent necrosis of FADD-deficient IECs in the small and large bowel. Therefore, by inhibiting RIP3-mediated IEC necrosis, FADD preserves epithelial barrier integrity and antibacterial defence, maintains homeostasis and prevents chronic intestinal inflammation. Collectively, these results show that mechanisms preventing RIP3-mediated epithelial cell death are critical for the maintenance of intestinal homeostasis and indicate that programmed necrosis of IECs might be implicated in the pathogenesis of inflammatory bowel disease, in which Paneth cell and barrier defects are thought to contribute to intestinal inflammation.
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