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NOTCH通过非经典NF-κB抑制炎性关节炎中破骨细胞的形成。

NOTCH inhibits osteoblast formation in inflammatory arthritis via noncanonical NF-κB.

作者信息

Zhang Hengwei, Hilton Matthew J, Anolik Jennifer H, Welle Stephen L, Zhao Chen, Yao Zhenqiang, Li Xing, Wang Zhiyu, Boyce Brendan F, Xing Lianping

出版信息

J Clin Invest. 2014 Jul;124(7):3200-14. doi: 10.1172/JCI68901. Epub 2014 Jun 2.

Abstract

NOTCH-dependent signaling pathways are critical for normal bone remodeling; however, it is unclear if dysfunctional NOTCH activation contributes to inflammation-mediated bone loss, as observed in rheumatoid arthritis (RA) patients. We performed RNA sequencing and pathway analyses in mesenchymal stem cells (MSCs) isolated from transgenic TNF-expressing mice, a model of RA, to identify pathways responsible for decreased osteoblast differentiation. 53 pathways were dysregulated in MSCs from RA mice, among which expression of genes encoding NOTCH pathway members and members of the noncanonical NF-κB pathway were markedly elevated. Administration of NOTCH inhibitors to RA mice prevented bone loss and osteoblast inhibition, and CFU-fibroblasts from RA mice treated with NOTCH inhibitors formed more new bone in recipient mice with tibial defects. Overexpression of the noncanonical NF-κB subunit p52 and RELB in a murine pluripotent stem cell line increased NOTCH intracellular domain-dependent (NICD-dependent) activation of an RBPjκ reporter and levels of the transcription factor HES1. TNF promoted p52/RELB binding to NICD, which enhanced binding at the RBPjκ site within the Hes1 promoter. Furthermore, MSC-enriched cells from RA patients exhibited elevated levels of HES1, p52, and RELB. Together, these data indicate that persistent NOTCH activation in MSCs contributes to decreased osteoblast differentiation associated with RA and suggest that NOTCH inhibitors could prevent inflammation-mediated bone loss.

摘要

NOTCH依赖的信号通路对正常骨重塑至关重要;然而,功能失调的NOTCH激活是否会导致炎症介导的骨质流失尚不清楚,类风湿性关节炎(RA)患者中就观察到了这种情况。我们对从表达肿瘤坏死因子(TNF)的转基因小鼠(一种RA模型)中分离出的间充质干细胞(MSC)进行了RNA测序和通路分析,以确定导致成骨细胞分化减少的通路。RA小鼠的MSC中有53条通路失调,其中编码NOTCH通路成员和非经典NF-κB通路成员的基因表达明显升高。给RA小鼠施用NOTCH抑制剂可预防骨质流失和成骨细胞抑制,用NOTCH抑制剂处理的RA小鼠的CFU-成纤维细胞在患有胫骨缺损的受体小鼠中形成了更多新骨。在小鼠多能干细胞系中过表达非经典NF-κB亚基p52和RELB可增加NOTCH细胞内结构域依赖(NICD依赖)的RBPjκ报告基因激活以及转录因子HES1的水平。TNF促进p52/RELB与NICD结合,从而增强在Hes1启动子内RBPjκ位点的结合。此外,RA患者的富含MSC的细胞中HES1、p52和RELB水平升高。总之,这些数据表明MSC中持续的NOTCH激活导致了与RA相关的成骨细胞分化减少,并表明NOTCH抑制剂可以预防炎症介导的骨质流失。

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