TGFβ attenuates cartilage extracellular matrix degradation via enhancing FBXO6-mediated MMP14 ubiquitination

泛素 泛素连接酶 软骨 医学 细胞外基质 细胞生物学 化学 骨关节炎 基因敲除 转化生长因子 基因剔除小鼠 癌症研究 基质金属蛋白酶 内科学 病理 生物 生物化学 基因 受体 解剖 替代医学
作者
Gangliang Wang,Shuai Chen,Ziang Xie,Shuying Shen,Wenbin Xu,Wenxiang Chen,Xiang Li,Yizheng Wu,Liangping Li,Bin Liu,Xianjun Ding,An Qin,Shunwu Fan
出处
期刊:Annals of the Rheumatic Diseases [BMJ]
卷期号:79 (8): 1111-1120 被引量:52
标识
DOI:10.1136/annrheumdis-2019-216911
摘要

Objectives FBXO6, a component of the ubiquitin E3 ligases, has been shown to bind high mannose N-linked glycoproteins and act as ubiquitin ligase subunits. Most proteins in the secretory pathway, such as matrix metalloproteinases, are modified with N-glycans and play important roles in the development of osteoarthritis (OA). However, whether FBXO6 exerts regulatory effects on the pathogenesis of OA remains undefined. Methods The expression of FBXO6 was examined in the cartilage of human and multiple mouse OA models. The role of FBXO6 in cartilage degeneration was analysed with global FBXO6 -/- mice, transgenic Col2a1-CreER T2 ;FBXO6 f/f mice. The FBXO6 interacting partner MMP14 and its regulatory transcriptional factor SMAD2/3 were identified and validated in different pathological models as well as SMAD2 -/- mice. Results The expression of FBXO6 decreased in the cartilage from human OA samples, anterior cruciate ligament transaction (ACLT) -induced OA samples, spontaneous OA STR/ort samples and aged mice samples. Global knockout or conditional knockout of FBXO6 in cartilage promoted experimental OA process. The molecular mechanism study revealed that FBXO6 decreased MMP14 by ubiquitination and degradation, leading to inhibited proteolytic activation of MMP13. Interestingly, FBXO6 expression is regulated by transforming growth factor β (TGFβ)-SMAD2/3 signalling pathway. Therefore, the overexpression of FBXO6 protected mice from post-injury OA development. Conclusions TGFβ-SMAD2/3 signalling pathway suppressed MMP13 activation by upregulating of FBXO6 transcription and consequently promoting MMP14 proteasomal degradation. Inducement of FBXO6 expression in OA cartilage might provide a promising OA therapeutic strategy.
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