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The role of TNFRSF11B in development of osteoarthritic cartilage

OBJECTIVES: 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 car...

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Autores principales: Rodríguez Ruiz, Alejandro, Tuerlings, Margo, Das, Ankita, Coutinho de Almeida, Rodrigo, Suchiman, H Eka D, Nelissen, Rob G H H, Ramos, Yolande F M, Meulenbelt, Ingrid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8824428/
https://www.ncbi.nlm.nih.gov/pubmed/33989379
http://dx.doi.org/10.1093/rheumatology/keab440
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author Rodríguez Ruiz, Alejandro
Tuerlings, Margo
Das, Ankita
Coutinho de Almeida, Rodrigo
Suchiman, H Eka D
Nelissen, Rob G H H
Ramos, Yolande F M
Meulenbelt, Ingrid
author_facet Rodríguez Ruiz, Alejandro
Tuerlings, Margo
Das, Ankita
Coutinho de Almeida, Rodrigo
Suchiman, H Eka D
Nelissen, Rob G H H
Ramos, Yolande F M
Meulenbelt, Ingrid
author_sort Rodríguez Ruiz, Alejandro
collection PubMed
description OBJECTIVES: 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. METHODS: 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). RESULTS: 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. CONCLUSION: 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.
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spelling pubmed-88244282022-02-09 The role of TNFRSF11B in development of osteoarthritic cartilage Rodríguez Ruiz, Alejandro Tuerlings, Margo Das, Ankita Coutinho de Almeida, Rodrigo Suchiman, H Eka D Nelissen, Rob G H H Ramos, Yolande F M Meulenbelt, Ingrid Rheumatology (Oxford) Basic Science OBJECTIVES: 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. METHODS: 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). RESULTS: 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. CONCLUSION: 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. Oxford University Press 2021-05-14 /pmc/articles/PMC8824428/ /pubmed/33989379 http://dx.doi.org/10.1093/rheumatology/keab440 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the British Society for Rheumatology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Basic Science
Rodríguez Ruiz, Alejandro
Tuerlings, Margo
Das, Ankita
Coutinho de Almeida, Rodrigo
Suchiman, H Eka D
Nelissen, Rob G H H
Ramos, Yolande F M
Meulenbelt, Ingrid
The role of TNFRSF11B in development of osteoarthritic cartilage
title The role of TNFRSF11B in development of osteoarthritic cartilage
title_full The role of TNFRSF11B in development of osteoarthritic cartilage
title_fullStr The role of TNFRSF11B in development of osteoarthritic cartilage
title_full_unstemmed The role of TNFRSF11B in development of osteoarthritic cartilage
title_short The role of TNFRSF11B in development of osteoarthritic cartilage
title_sort role of tnfrsf11b in development of osteoarthritic cartilage
topic Basic Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8824428/
https://www.ncbi.nlm.nih.gov/pubmed/33989379
http://dx.doi.org/10.1093/rheumatology/keab440
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