| Literature DB >> 30305454 |
Eun Kyung Song1,2, Jimin Jeon3,4,5, Dong Gil Jang1, Ha Eun Kim1, Hyo Jung Sim1, Keun Yeong Kwon1, Sofia Medina-Ruiz6, Hyun-Jun Jang1, Ah Reum Lee1, Jun Gi Rho7, Hyun-Shik Lee8, Seok Jung Kim9, Chan Young Park1, Kyungjae Myung2, Wook Kim7, Taejoon Kwon1, Siyoung Yang10,4,5, Tae Joo Park11,2.
Abstract
Developing and mature chondrocytes constantly interact with and remodel the surrounding extracellular matrix (ECM). Recent research indicates that integrin-ECM interaction is differentially regulated during cartilage formation (chondrogenesis). Integrin signaling is also a key source of the catabolic reactions responsible for joint destruction in both rheumatoid arthritis and osteoarthritis. However, we do not understand how chondrocytes dynamically regulate integrin signaling in such an ECM-rich environment. Here, we found that developing chondrocytes express integrin-β-like 1 (Itgbl1) at specific stages, inhibiting integrin signaling and promoting chondrogenesis. Unlike cytosolic integrin inhibitors, ITGBL1 is secreted and physically interacts with integrins to down-regulate activity. We observed that Itgbl1 expression was strongly reduced in the damaged articular cartilage of patients with osteoarthritis (OA). Ectopic expression of Itgbl1 protected joint cartilage against OA development in the destabilization of the medial meniscus-induced OA mouse model. Our results reveal ITGBL1 signaling as an underlying mechanism of protection against destructive cartilage disorders and suggest the potential therapeutic utility of targeting ITGBL1 to modulate integrin signaling in human disease.Entities:
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Year: 2018 PMID: 30305454 DOI: 10.1126/scitranslmed.aam7486
Source DB: PubMed Journal: Sci Transl Med ISSN: 1946-6234 Impact factor: 17.956