Cargando…

CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss

Reduced bone density and secondary osteoporosis, resulting in increased risk of fracture, is a significant complicating factor in the inflammatory arthritides. While the exact etiology of systemic bone loss is not fully elucidated, recent insights into the tumor necrosis factor super family (TNFSF)...

Descripción completa

Detalles Bibliográficos
Autores principales: Collins, Fraser L., Williams, Jessica O., Bloom, Anja C., Singh, Ravinder K., Jordan, Lauren, Stone, Michael D., McCabe, Laura R., Wang, Eddie C.Y., Williams, Anwen S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5378198/
https://www.ncbi.nlm.nih.gov/pubmed/28062298
http://dx.doi.org/10.1016/j.bone.2017.01.002
_version_ 1782519408705404928
author Collins, Fraser L.
Williams, Jessica O.
Bloom, Anja C.
Singh, Ravinder K.
Jordan, Lauren
Stone, Michael D.
McCabe, Laura R.
Wang, Eddie C.Y.
Williams, Anwen S.
author_facet Collins, Fraser L.
Williams, Jessica O.
Bloom, Anja C.
Singh, Ravinder K.
Jordan, Lauren
Stone, Michael D.
McCabe, Laura R.
Wang, Eddie C.Y.
Williams, Anwen S.
author_sort Collins, Fraser L.
collection PubMed
description Reduced bone density and secondary osteoporosis, resulting in increased risk of fracture, is a significant complicating factor in the inflammatory arthritides. While the exact etiology of systemic bone loss is not fully elucidated, recent insights into the tumor necrosis factor super family (TNFSF) revealed a potential role for death receptor 3 (DR3/TNFRSF25) and one of its ligands, TNF-like protein 1A (TL1A/TNFSF15). The mechanisms by which DR3/TL1A signalling modulates bone loss are unclear. We investigated the effect of DR3/TL1A signalling upon osteoclast-dependent chemokine and MMP production to unravel novel mechanisms whereby this pathway regulates OC formation and OC-dependent bone resorption. Collagen induced arthritis (CIA) was established in DR3(wt) and DR3(ko) mice, joints were sectioned and analysed histologically for bone damage while systemic trabecular bone loss distal to the affected joints was compared by micro-CT. Ablation of DR3 protected DBA/1 mice against the development and progression of CIA. In DR3(ko), joints of the ankle and mid-foot were almost free of bone erosions and long bones of mice with CIA were protected against systemic trabecular bone loss. In vitro, expression of DR3 was confirmed on primary human CD14(+) osteoclast precursors by flow cytometry. These cells were treated with TL1A in osteoclast differentiation medium and TRAP(+) osteoclasts, bone resorption, levels of osteoclast-associated chemokines (CCL3, CCL2 and CXCL8) and MMP-9 measured. TL1A intensified human osteoclast differentiation and bone resorption and increased osteoclast-associated production of CCL3 and MMP-9. Our data reveals the DR3 pathway as an attractive therapeutic target to combat adverse bone pathology associated with inflammatory arthritis. We demonstrate that DR3 is critical in the pathogenesis of murine CIA and associated secondary osteoporosis. Furthermore, we identify a novel mechanism by which the DR3/TL1A pathway directly enhances human OC formation and resorptive activity, controlling expression and activation of CCL3 and MMP-9.
format Online
Article
Text
id pubmed-5378198
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Elsevier Science
record_format MEDLINE/PubMed
spelling pubmed-53781982017-04-07 CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss Collins, Fraser L. Williams, Jessica O. Bloom, Anja C. Singh, Ravinder K. Jordan, Lauren Stone, Michael D. McCabe, Laura R. Wang, Eddie C.Y. Williams, Anwen S. Bone Full Length Article Reduced bone density and secondary osteoporosis, resulting in increased risk of fracture, is a significant complicating factor in the inflammatory arthritides. While the exact etiology of systemic bone loss is not fully elucidated, recent insights into the tumor necrosis factor super family (TNFSF) revealed a potential role for death receptor 3 (DR3/TNFRSF25) and one of its ligands, TNF-like protein 1A (TL1A/TNFSF15). The mechanisms by which DR3/TL1A signalling modulates bone loss are unclear. We investigated the effect of DR3/TL1A signalling upon osteoclast-dependent chemokine and MMP production to unravel novel mechanisms whereby this pathway regulates OC formation and OC-dependent bone resorption. Collagen induced arthritis (CIA) was established in DR3(wt) and DR3(ko) mice, joints were sectioned and analysed histologically for bone damage while systemic trabecular bone loss distal to the affected joints was compared by micro-CT. Ablation of DR3 protected DBA/1 mice against the development and progression of CIA. In DR3(ko), joints of the ankle and mid-foot were almost free of bone erosions and long bones of mice with CIA were protected against systemic trabecular bone loss. In vitro, expression of DR3 was confirmed on primary human CD14(+) osteoclast precursors by flow cytometry. These cells were treated with TL1A in osteoclast differentiation medium and TRAP(+) osteoclasts, bone resorption, levels of osteoclast-associated chemokines (CCL3, CCL2 and CXCL8) and MMP-9 measured. TL1A intensified human osteoclast differentiation and bone resorption and increased osteoclast-associated production of CCL3 and MMP-9. Our data reveals the DR3 pathway as an attractive therapeutic target to combat adverse bone pathology associated with inflammatory arthritis. We demonstrate that DR3 is critical in the pathogenesis of murine CIA and associated secondary osteoporosis. Furthermore, we identify a novel mechanism by which the DR3/TL1A pathway directly enhances human OC formation and resorptive activity, controlling expression and activation of CCL3 and MMP-9. Elsevier Science 2017-04 /pmc/articles/PMC5378198/ /pubmed/28062298 http://dx.doi.org/10.1016/j.bone.2017.01.002 Text en © 2017 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Full Length Article
Collins, Fraser L.
Williams, Jessica O.
Bloom, Anja C.
Singh, Ravinder K.
Jordan, Lauren
Stone, Michael D.
McCabe, Laura R.
Wang, Eddie C.Y.
Williams, Anwen S.
CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss
title CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss
title_full CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss
title_fullStr CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss
title_full_unstemmed CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss
title_short CCL3 and MMP-9 are induced by TL1A during death receptor 3 (TNFRSF25)-dependent osteoclast function and systemic bone loss
title_sort ccl3 and mmp-9 are induced by tl1a during death receptor 3 (tnfrsf25)-dependent osteoclast function and systemic bone loss
topic Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5378198/
https://www.ncbi.nlm.nih.gov/pubmed/28062298
http://dx.doi.org/10.1016/j.bone.2017.01.002
work_keys_str_mv AT collinsfraserl ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT williamsjessicao ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT bloomanjac ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT singhravinderk ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT jordanlauren ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT stonemichaeld ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT mccabelaurar ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT wangeddiecy ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss
AT williamsanwens ccl3andmmp9areinducedbytl1aduringdeathreceptor3tnfrsf25dependentosteoclastfunctionandsystemicboneloss