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高影响力突变通过减少与II型胶原的结合降低软骨生成潜能并影响软骨沉积。

High-impact mutation decreases chondrogenic potential and affects cartilage deposition via decreased binding to collagen type II.

作者信息

van Hoolwerff Marcella, Rodríguez Ruiz Alejandro, Bouma Marga, Suchiman H Eka D, Koning Roman I, Jost Carolina R, Mulder Aat A, Freund Christian, Guilak Farshid, Ramos Yolande F M, Meulenbelt Ingrid

机构信息

Department of Biomedical Data Sciences, Section Molecular Epidemiology, Leiden University Medical Center, Leiden, Netherlands.

LUMC hiPSC Hotel, Leiden University Medical Center, Leiden, Netherlands.

出版信息

Sci Adv. 2021 Nov 5;7(45):eabg8583. doi: 10.1126/sciadv.abg8583.

Abstract

Osteoarthritis is the most prevalent joint disease worldwide, yet progress in development of effective disease-modifying treatments is slow because of lack of insight into the underlying disease pathways. Therefore, we aimed to identify the causal pathogenic mutation in an early-onset osteoarthritis family, followed by functional studies in human induced pluripotent stem cells (hiPSCs) in an in vitro organoid cartilage model. We demonstrated that the identified causal missense mutation in the gelatin-binding domain of the extracellular matrix protein fibronectin resulted in significant decreased binding capacity to collagen type II. Further analyses of formed hiPSC-derived neo-cartilage tissue highlighted that mutated fibronectin affected chondrogenic capacity and propensity to a procatabolic osteoarthritic state. Together, we demonstrate that binding of fibronectin to collagen type II is crucial for fibronectin downstream gene expression of chondrocytes. We advocate that effective treatment development should focus on restoring or maintaining proper binding between fibronectin and collagen type II.

摘要

骨关节炎是全球最常见的关节疾病,但由于对潜在疾病途径缺乏深入了解,有效的疾病缓解治疗方法的开发进展缓慢。因此,我们旨在确定一个早发性骨关节炎家族中的致病突变,随后在体外类器官软骨模型中对人诱导多能干细胞(hiPSC)进行功能研究。我们证明,在细胞外基质蛋白纤连蛋白的明胶结合结构域中鉴定出的致病错义突变导致与II型胶原的结合能力显著下降。对形成的hiPSC来源的新软骨组织的进一步分析表明,突变的纤连蛋白影响软骨生成能力和向促分解代谢骨关节炎状态发展的倾向。我们共同证明,纤连蛋白与II型胶原的结合对于软骨细胞的纤连蛋白下游基因表达至关重要。我们主张,有效的治疗开发应侧重于恢复或维持纤连蛋白与II型胶原之间的适当结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3233/8570604/d145a4afa509/sciadv.abg8583-f1.jpg

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