The role of TNFRSF11B in development of osteoarthritic cartilage.


Journal

Rheumatology (Oxford, England)
ISSN: 1462-0332
Titre abrégé: Rheumatology (Oxford)
Pays: England
ID NLM: 100883501

Informations de publication

Date de publication:
02 02 2022
Historique:
received: 16 02 2021
revised: 12 05 2021
pubmed: 15 5 2021
medline: 11 3 2022
entrez: 14 5 2021
Statut: ppublish

Résumé

OA is a complex genetic disease with different risk factors contributing to its development. One of the genes, TNFRSF11B, previously identified with gain-of-function mutation in a family with early-onset OA with chondrocalcinosis, is among the highest upregulated genes in lesioned OA cartilage (RAAK-study). Here, we determined the role of TNFRSF11B overexpression in development of OA. Human primary articular chondrocytes (9 donors RAAK study) were transduced using lentiviral particles with or without TNFRSF11B. Cells were cultured for 1 week in a 3 D in-vitro chondrogenic model. TNFRSF11B overexpression was confirmed by RT-qPCR, immunohistochemistry and ELISA. Effects of TNFRSF11B overexpression on cartilage matrix deposition, matrix mineralization, and genes highly correlated to TNFRSF11B in RNA-sequencing dataset (r >0.75) were determined by RT-qPCR. Additionally, glycosaminoglycans and collagen deposition were visualized with Alcian blue staining and immunohistochemistry (COL1 and COL2). Overexpression of TNFRSF11B resulted in strong upregulation of MMP13, COL2A1 and COL1A1. Likewise, mineralization and osteoblast characteristic markers RUNX2, ASPN and OGN showed a consistent increase. Among 30 genes highly correlated to TNFRSF11B, expression of only eight changed significantly, with BMP6 showing the highest increase (9-fold) while expression of RANK and RANKL remained unchanged indicating previously unknown downstream pathways of TNFRSF11B in cartilage. Results of our 3D in vitro chondrogenesis model indicate that upregulation of TNFRSF11B in lesioned OA cartilage may act as a direct driving factor for chondrocyte to osteoblast transition observed in OA pathophysiology. This transition does not appear to act via the OPG/RANK/RANKL triad common in bone remodeling.

Identifiants

pubmed: 33989379
pii: 6275764
doi: 10.1093/rheumatology/keab440
pmc: PMC8824428
doi:

Substances chimiques

Osteoprotegerin 0
TNFRSF11B protein, human 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

856-864

Informations de copyright

© The Author(s) 2021. Published by Oxford University Press on behalf of the British Society for Rheumatology.

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Auteurs

Alejandro Rodríguez Ruiz (A)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

Margo Tuerlings (M)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

Ankita Das (A)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

Rodrigo Coutinho de Almeida (R)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

H Eka D Suchiman (HED)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

Rob G H H Nelissen (RGHH)

Department of Orthopaedics, Leiden University Medical Center, Leiden, The Netherlands.

Yolande F M Ramos (YFM)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

Ingrid Meulenbelt (I)

Department of Biomedical Data Sciences, Section Molecular Epidemiology.

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Classifications MeSH