纤维化
旁分泌信号
炎症
细胞生物学
调解人
肝纤维化
生物
转化生长因子β
转化生长因子
免疫学
癌症研究
医学
病理
受体
生物化学
作者
Jack Leslie,Marina García‐Macía,Saimir Luli,Julie C. Worrell,William J. Reilly,Hannah L. Paish,Amber Knox,Ben S. Barksby,Lucy Gee,Marco Y. W. Zaki,Amy Collins,Rachel A. Burgoyne,Rainie Cameron,Charlotte Bragg,Xin Xu,Git Chung,Colin Brown,Andrew D. Blanchard,Carmel B. Nanthakumar,M.A. Karsdal
出处
期刊:Nature metabolism
[Nature Portfolio]
日期:2020-11-09
卷期号:2 (11): 1350-1367
被引量:39
标识
DOI:10.1038/s42255-020-00306-2
摘要
Fibrosis is a common pathological feature of chronic disease. Deletion of the NF-κB subunit c-Rel limits fibrosis in multiple organs, although the mechanistic nature of this protection is unresolved. Using cell-specific gene-targeting manipulations in mice undergoing liver damage, we elucidate a critical role for c-Rel in controlling metabolic changes required for inflammatory and fibrogenic activities of hepatocytes and macrophages and identify Pfkfb3 as the key downstream metabolic mediator of this response. Independent deletions of Rel in hepatocytes or macrophages suppressed liver fibrosis induced by carbon tetrachloride, while combined deletion had an additive anti-fibrogenic effect. In transforming growth factor-β1-induced hepatocytes, c-Rel regulates expression of a pro-fibrogenic secretome comprising inflammatory molecules and connective tissue growth factor, the latter promoting collagen secretion from HMs. Macrophages lacking c-Rel fail to polarize to M1 or M2 states, explaining reduced fibrosis in RelΔLysM mice. Pharmacological inhibition of c-Rel attenuated multi-organ fibrosis in both murine and human fibrosis. In conclusion, activation of c-Rel/Pfkfb3 in damaged tissue instigates a paracrine signalling network among epithelial, myeloid and mesenchymal cells to stimulate fibrogenesis. Targeting the c-Rel-Pfkfb3 axis has potential for therapeutic applications in fibrotic disease.
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