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Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss

OBJECTIVES: Rheumatoid arthritis (RA)-specific anti-citrullinated protein/peptide antibodies (ACPAs) appear before disease onset and are associated with bone destruction. We aimed to dissect the role of ACPAs in osteoclast (OC) activation and to identify key cellular mediators in this process. METHO...

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Autores principales: Krishnamurthy, Akilan, Joshua, Vijay, Haj Hensvold, Aase, Jin, Tao, Sun, Meng, Vivar, Nancy, Ytterberg, A Jimmy, Engström, Marianne, Fernandes-Cerqueira, Cátia, Amara, Khaled, Magnusson, Malin, Wigerblad, Gustaf, Kato, Jungo, Jiménez-Andrade, Juan Miguel, Tyson, Kerry, Rapecki, Stephen, Lundberg, Karin, Catrina, Sergiu-Bogdan, Jakobsson, Per-Johan, Svensson, Camilla, Malmström, Vivianne, Klareskog, Lars, Wähämaa, Heidi, Catrina, Anca I
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4819614/
https://www.ncbi.nlm.nih.gov/pubmed/26612338
http://dx.doi.org/10.1136/annrheumdis-2015-208093
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author Krishnamurthy, Akilan
Joshua, Vijay
Haj Hensvold, Aase
Jin, Tao
Sun, Meng
Vivar, Nancy
Ytterberg, A Jimmy
Engström, Marianne
Fernandes-Cerqueira, Cátia
Amara, Khaled
Magnusson, Malin
Wigerblad, Gustaf
Kato, Jungo
Jiménez-Andrade, Juan Miguel
Tyson, Kerry
Rapecki, Stephen
Lundberg, Karin
Catrina, Sergiu-Bogdan
Jakobsson, Per-Johan
Svensson, Camilla
Malmström, Vivianne
Klareskog, Lars
Wähämaa, Heidi
Catrina, Anca I
author_facet Krishnamurthy, Akilan
Joshua, Vijay
Haj Hensvold, Aase
Jin, Tao
Sun, Meng
Vivar, Nancy
Ytterberg, A Jimmy
Engström, Marianne
Fernandes-Cerqueira, Cátia
Amara, Khaled
Magnusson, Malin
Wigerblad, Gustaf
Kato, Jungo
Jiménez-Andrade, Juan Miguel
Tyson, Kerry
Rapecki, Stephen
Lundberg, Karin
Catrina, Sergiu-Bogdan
Jakobsson, Per-Johan
Svensson, Camilla
Malmström, Vivianne
Klareskog, Lars
Wähämaa, Heidi
Catrina, Anca I
author_sort Krishnamurthy, Akilan
collection PubMed
description OBJECTIVES: Rheumatoid arthritis (RA)-specific anti-citrullinated protein/peptide antibodies (ACPAs) appear before disease onset and are associated with bone destruction. We aimed to dissect the role of ACPAs in osteoclast (OC) activation and to identify key cellular mediators in this process. METHODS: Polyclonal ACPA were isolated from the synovial fluid (SF) and peripheral blood of patients with RA. Monoclonal ACPAs were isolated from single SF B-cells of patients with RA. OCs were developed from blood cell precursors with or without ACPAs. We analysed expression of citrullinated targets and peptidylarginine deiminases (PAD) enzymes by immunohistochemistry and cell supernatants by cytometric bead array. The effect of an anti-interleukin (IL)-8 neutralising antibody and a pan-PAD inhibitor was tested in the OC cultures. Monoclonal ACPAs were injected into mice and bone structure was analysed by micro-CT before and after CXCR1/2 blocking with reparixin. RESULTS: Protein citrullination by PADs is essential for OC differentiation. Polyclonal ACPAs enhance OC differentiation through a PAD-dependent IL-8-mediated autocrine loop that is completely abolished by IL-8 neutralisation. Some, but not all, human monoclonal ACPAs derived from single SF B-cells of patients with RA and exhibiting distinct epitope specificities promote OC differentiation in cell cultures. Transfer of the monoclonal ACPAs into mice induced bone loss that was completely reversed by the IL-8 antagonist reparixin. CONCLUSIONS: We provide novel insights into the key role of citrullination and PAD enzymes during OC differentiation and ACPA-induced OC activation. Our findings suggest that IL8-dependent OC activation may constitute an early event in the initiation of the joint specific inflammation in ACPA-positive RA.
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spelling pubmed-48196142016-04-19 Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss Krishnamurthy, Akilan Joshua, Vijay Haj Hensvold, Aase Jin, Tao Sun, Meng Vivar, Nancy Ytterberg, A Jimmy Engström, Marianne Fernandes-Cerqueira, Cátia Amara, Khaled Magnusson, Malin Wigerblad, Gustaf Kato, Jungo Jiménez-Andrade, Juan Miguel Tyson, Kerry Rapecki, Stephen Lundberg, Karin Catrina, Sergiu-Bogdan Jakobsson, Per-Johan Svensson, Camilla Malmström, Vivianne Klareskog, Lars Wähämaa, Heidi Catrina, Anca I Ann Rheum Dis Basic and Translational Research OBJECTIVES: Rheumatoid arthritis (RA)-specific anti-citrullinated protein/peptide antibodies (ACPAs) appear before disease onset and are associated with bone destruction. We aimed to dissect the role of ACPAs in osteoclast (OC) activation and to identify key cellular mediators in this process. METHODS: Polyclonal ACPA were isolated from the synovial fluid (SF) and peripheral blood of patients with RA. Monoclonal ACPAs were isolated from single SF B-cells of patients with RA. OCs were developed from blood cell precursors with or without ACPAs. We analysed expression of citrullinated targets and peptidylarginine deiminases (PAD) enzymes by immunohistochemistry and cell supernatants by cytometric bead array. The effect of an anti-interleukin (IL)-8 neutralising antibody and a pan-PAD inhibitor was tested in the OC cultures. Monoclonal ACPAs were injected into mice and bone structure was analysed by micro-CT before and after CXCR1/2 blocking with reparixin. RESULTS: Protein citrullination by PADs is essential for OC differentiation. Polyclonal ACPAs enhance OC differentiation through a PAD-dependent IL-8-mediated autocrine loop that is completely abolished by IL-8 neutralisation. Some, but not all, human monoclonal ACPAs derived from single SF B-cells of patients with RA and exhibiting distinct epitope specificities promote OC differentiation in cell cultures. Transfer of the monoclonal ACPAs into mice induced bone loss that was completely reversed by the IL-8 antagonist reparixin. CONCLUSIONS: We provide novel insights into the key role of citrullination and PAD enzymes during OC differentiation and ACPA-induced OC activation. Our findings suggest that IL8-dependent OC activation may constitute an early event in the initiation of the joint specific inflammation in ACPA-positive RA. BMJ Publishing Group 2016-04 2015-11-26 /pmc/articles/PMC4819614/ /pubmed/26612338 http://dx.doi.org/10.1136/annrheumdis-2015-208093 Text en Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://www.bmj.com/company/products-services/rights-and-licensing/ This is an Open Access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/
spellingShingle Basic and Translational Research
Krishnamurthy, Akilan
Joshua, Vijay
Haj Hensvold, Aase
Jin, Tao
Sun, Meng
Vivar, Nancy
Ytterberg, A Jimmy
Engström, Marianne
Fernandes-Cerqueira, Cátia
Amara, Khaled
Magnusson, Malin
Wigerblad, Gustaf
Kato, Jungo
Jiménez-Andrade, Juan Miguel
Tyson, Kerry
Rapecki, Stephen
Lundberg, Karin
Catrina, Sergiu-Bogdan
Jakobsson, Per-Johan
Svensson, Camilla
Malmström, Vivianne
Klareskog, Lars
Wähämaa, Heidi
Catrina, Anca I
Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
title Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
title_full Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
title_fullStr Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
title_full_unstemmed Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
title_short Identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
title_sort identification of a novel chemokine-dependent molecular mechanism underlying rheumatoid arthritis-associated autoantibody-mediated bone loss
topic Basic and Translational Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4819614/
https://www.ncbi.nlm.nih.gov/pubmed/26612338
http://dx.doi.org/10.1136/annrheumdis-2015-208093
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