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Cited 35 time in webofscience Cited 36 time in scopus
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Pleiotropic roles of metallothioneins as regulators of chondrocyte apoptosis and catabolic and anabolic pathways during osteoarthritis pathogenesisopen access

Authors
Won, Y[Won, Yoonkyung]Shin, Y[Shin, Youngnim]Chun, CH[Chun, Churl-Hong]Cho, Y[Cho, Yongsik]Ha, CW[Ha, Chul-Won]Kim, JH[Kim, Jin-Hong]Chun, JS[Chun, Jang-Soo]
Issue Date
Nov-2016
Publisher
BMJ PUBLISHING GROUP
Citation
ANNALS OF THE RHEUMATIC DISEASES, v.75, no.11, pp.2045 - 2052
Indexed
SCIE
SCOPUS
Journal Title
ANNALS OF THE RHEUMATIC DISEASES
Volume
75
Number
11
Start Page
2045
End Page
2052
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/34663
DOI
10.1136/annrheumdis-2015-208406
ISSN
0003-4967
Abstract
Objective The zinc-ZIP8-MTF1 axis induces metallothionein (MT) expression and is a catabolic regulator of experimental osteoarthritis (OA) in mice. The main aim of the current study was to explore the roles and underlying molecular mechanisms of MTs in OA pathogenesis. Methods Experimental OA in mice was induced by destabilisation of the medial meniscus or intra-articular injection of adenovirus carrying a target gene (Ad-Zip8, Ad-Mtf1, Ad-Epas1, Ad-Nampt, Ad-Mt1 or Ad-Mt2) into wild type, Zip8(fl/fl); Col2a1-Cre, Mtf1(fl/fl); Col2a1-Cre and Mt1/Mt2 double knockout mice. Primary cultured mouse chondrocytes were infected with Ad-Mt1 or Ad-Mt2, and gene expression profiles analysed via microarray and reverse transcription-PCR. Proteins in human and mouse OA cartilage were identified via immunostaining. Chondrocyte apoptosis in OA cartilage was determined using terminal deoxynucleotidyl transferase (TdT)-mediated deoxyuridine triphosphate (dUTP) nick end labelling (TUNEL). Results MTs were highly expressed in human and mouse OA cartilage. Hypoxia-inducible factor 2 alpha, nicotinamide phosphoribosyltransferase and several proinflammatory cytokine pathways, as well as the zinc-ZIP8-MTF1 axis were identified as upstream regulators of MT expression. Genetic deletion of Mt1 and Mt2 enhanced cartilage destruction through increasing chondrocyte apoptosis. Unexpectedly, aberrant overexpression of MT2, but not MT1, induced upregulation of matrix-degrading enzymes and downregulation of matrix molecules through nuclear factor-kappa B (NF-kappa B) and activator protein-1 (AP-1) activation, ultimately leading to OA. Conclusions MTs play an antiapoptotic role in post-traumatic OA. However, aberrant and chronic upregulation of MT2 triggers an imbalance between chondrocyte anabolism and catabolism, consequently accelerating OA development. Our findings collectively highlight pleiotropic roles of MTs as regulators of chondrocyte apoptosis as well as catabolic and anabolic pathways during OA pathogenesis.
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