Affiliation:
1. Department of Orthopaedic Surgery, The Second Affiliated Hospital, Zhejiang University School of Medicine; No.88
Jiefang Road, Hangzhou 310009, P.R. China
Abstract
Background:
Osteoarthritis (OA) is the predominant threat to the health of the elderly, and
it is crucial to understand the molecular pathogenetic mechanisms involved in it. This study aims to
investigate the role of a well-studied cancer-related long non-coding RNA (lncRNA)-POU3F3 in OA
and its implicated molecular mechanisms.
Method:
The expression of POU3F3 and miR-29a-3p was examined in osteoarthritis patients, as well
as destabilization of the medial meniscus (DMM) mouse OA model and IL- 1β induced chondrocytes
cell OA model, by quantitative real-time PCR. The interaction between POU3F3, miR-29a-3p and
transcription factor forkhead box O3 (FOXO3) was verified via dual-luciferase reporter analysis and
RNA immunoprecipitation analyses. Cell proliferation and apoptosis were evaluated by cell viability
assay and flow cytometry, respectively. Cartilage extracellular matrix (ECM) degradation was investigated
with ELISA and western blotting. In addition, the in vivo regulation of POU3F3 in OA was verified
by intra-articular injection of lentivirus overexpression POU3F31 in mice models.
Results:
The expression level of POU3F3 was decreased in OA patients/animal cartilage tissues and
IL-1β-stimulated in vitro chondrocyte model. POU3F3 overexpression inhibited IL-1β-induced injury
of chondrocytes, enhancing cell viability, suppressing apoptosis and inflammatory cytokine secretion,
rescuing metabolic dysfunction, and restraining autophagy in vitro. Mechanistically, Luciferase reporter
and RNA immunoprecipitation (RIP) assays indicated that miR-29a-3p could directly bind to
POU3F3, and FOXO3 was a target gene of miR-29a-3p. Functional rescue assays confirmed this
POU3F3/miR-29a-3p/FOXO3 axis in chondrocytes during OA occurrence. Furthermore, intraarticularly
delivery of lentivirus containing POU3F3 alleviates the damage in mouse OA model in
vivo.
Conclusion:
In conclusion, this work highlights the role of the POU3F3/miR-29a-3p/FOXO3 axis in
the OA pathogenesis, suggesting this axis as a potential therapeutic target for OA.
Funder
National Natural Science Foundation of China
Publisher
Bentham Science Publishers Ltd.
Subject
Genetics (clinical),Drug Discovery,Genetics,Molecular Biology,Molecular Medicine
Cited by
12 articles.
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