| Literature DB >> 30944169 |
Donghyun Kang1,2, Jungkwon Shin1,2, Yongsik Cho1,2, Hyeon-Seop Kim1,2, Young-Ran Gu1,2, Haedong Kim1,2, Kwon Tae You1,2, Moon Jong Chang3, Chong Bum Chang3, Seung-Baik Kang3, Jong-Seo Kim1,2, V Narry Kim1,2, Jin-Hong Kim4,2,5.
Abstract
A progressive loss of cartilage matrix leads to the development of osteoarthritis (OA). Matrix homeostasis is disturbed in OA cartilage as the result of reduced production of cartilage-specific matrix and increased secretion of catabolic mediators by chondrocytes. Chondrocyte senescence is a crucial cellular event contributing to such imbalance in matrix metabolism during OA development. Here, we identify miR-204 as a markedly up-regulated microRNA in OA cartilage. miR-204 is induced by transcription factors GATA4 and NF-κB in response to senescence signals. Up-regulated miR-204 simultaneously targets multiple components of the sulfated proteoglycan (PG) biosynthesis pathway, effectively shutting down PG anabolism. Ectopic expression of miR-204 in joints triggers spontaneous cartilage loss and OA development, whereas miR-204 inhibition ameliorates experimental OA, with concomitant recovery of PG synthesis and suppression of inflammatory senescence-associated secretory phenotype (SASP) factors in cartilage. Collectively, we unravel a stress-activated senescence pathway that underlies disrupted matrix homeostasis in OA cartilage.Entities:
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Year: 2019 PMID: 30944169 DOI: 10.1126/scitranslmed.aar6659
Source DB: PubMed Journal: Sci Transl Med ISSN: 1946-6234 Impact factor: 17.956