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14-3-3 epsilon is an intracellular component of TNFbib2 receptor complex and its activation protects against osteoarthritis

细胞内 转录因子 细胞生物学 医学 MAPK/ERK通路 骨关节炎 细胞外 软骨 NFKB1型 激酶 肿瘤坏死因子α 炎症 癌症研究 信号转导 软骨细胞 免疫学 生物 病理 生物化学 基因 解剖 替代医学
作者
Wenyu Fu,Aubryanna Hettinghouse,Yujianan Chen,Wenhuo Hu,Xiang Ding,Meng Chen,Yuanjing Ding,Jyoti Joshi Mundra,Wenhao Song,Ronghan Liu,Young‐Su Yi,Mukundan Attur,Jonathan Samuels,Eric J. Strauss,Philipp Leucht,Ran Schwarzkopf,Liu C
出处
期刊:Annals of the Rheumatic Diseases [BMJ]
卷期号:80 (12): 1615-1627 被引量:92
标识
DOI:10.1136/annrheumdis-2021-220000
摘要

Objectives Osteoarthritis (OA) is the most common joint disease; however, the indeterminate nature of mechanisms by which OA develops has restrained advancement of therapeutic targets. TNF signalling has been implicated in the pathogenesis of OA. TNFR1 primarily mediates inflammation, whereas emerging evidences demonstrate that TNFR2 plays an anti-inflammatory and protective role in several diseases and conditions. This study aims to decipher TNFR2 signalling in chondrocytes and OA. Methods Biochemical copurification and proteomics screen were performed to isolate the intracellular cofactors of TNFR2 complex. Bulk and single cell RNA-seq were employed to determine 14-3-3 epsilon (14-3-3ε) expression in human normal and OA cartilage. Transcription factor activity screen was used to isolate the transcription factors downstream of TNFR2/14-3-3ε. Various cell-based assays and genetically modified mice with naturally occurring and surgically induced OA were performed to examine the importance of this pathway in chondrocytes and OA. Results Signalling molecule 14-3-3ε was identified as an intracellular component of TNFR2 complexes in chondrocytes in response to progranulin (PGRN), a growth factor known to protect against OA primarily through activating TNFR2. 14-3-3ε was downregulated in OA and its deficiency deteriorated OA. 14-3-3ε was required for PGRN regulation of chondrocyte metabolism. In addition, both global and chondrocyte-specific deletion of 14-3-3ε largely abolished PGRN’s therapeutic effects against OA. Furthermore, PGRN/TNFR2/14-3-3ε signalled through activating extracellular signal-regulated kinase (ERK)-dependent Elk-1 while suppressing nuclear factor kappa B (NF-κB) in chondrocytes. Conclusions This study identifies 14-3-3ε as an inducible component of TNFR2 receptor complex in response to PGRN in chondrocytes and presents a previously unrecognised TNFR2 pathway in the pathogenesis of OA.
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