Targeting Fascin1 maintains chondrocytes phenotype and attenuates osteoarthritis development

软骨 软骨细胞 骨关节炎 细胞生物学 下调和上调 细胞外基质 多糖 化学 癌症研究 医学 生物 病理 蛋白多糖 生物化学 解剖 替代医学 基因
作者
Panpan Yang,Yun Xiao,Liangyu Chen,Chengliang Yang,Qinwei Cheng,Honghao Li,D. Chen,Jingshen Wu,Zhengquan Liao,Changsheng Yang,Chong Wang,Hong Wang,Bin Huang,E‐E Ke,Xiaochun Bai,Kai Li
出处
期刊:Bone research [Springer Nature]
卷期号:12 (1) 被引量:2
标识
DOI:10.1038/s41413-024-00357-1
摘要

Abstract Osteoarthritis (OA) is the most common form of arthritic disease, and phenotypic modification of chondrocytes is an important mechanism that contributes to the loss of cartilage homeostasis. This study identified that Fascin actin-bundling protein 1 (FSCN1) plays a pivotal role in regulating chondrocytes phenotype and maintaining cartilage homeostasis. Proteome-wide screening revealed markedly upregulated FSCN1 protein expression in human OA cartilage. FSCN1 accumulation was confirmed in the superficial layer of OA cartilage from humans and mice, primarily in dedifferentiated-like chondrocytes, associated with enhanced actin stress fiber formation and upregulated type I and III collagens. FSCN1-inducible knockout mice exhibited delayed cartilage degeneration following experimental OA surgery. Mechanistically, FSCN1 promoted actin polymerization and disrupted the inhibition of Decorin on TGF-β1, leading to excessive TGF-β1 production and ALK1/Smad1/5 signaling activation, thus, accelerated chondrocyte dedifferentiation. Intra-articular injection of FSCN1-overexpressing adeno-associated virus exacerbated OA progression in mice, which was mitigated by an ALK1 inhibitor. Moreover, FSCN1 inhibitor NP-G2-044 effectively reduced extracellular matrix degradation in OA mice, cultured human OA chondrocytes, and cartilage explants by suppressing ALK1/Smad1/5 signaling. These findings suggest that targeting FSCN1 represents a promising therapeutic approach for OA.
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