Cargando…

HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats

OBJECTIVES: HLA-B27 is a common genetic risk factor for the development of Spondyloarthritides (SpA). HLA-B27 can misfold to form cell-surface heavy chain homodimers (B27(2)) and induce pro-inflammatory responses that may lead to SpA pathogenesis. The presence of B27(2) can be detected on leukocytes...

Descripción completa

Detalles Bibliográficos
Autores principales: Marroquin Belaunzaran, Osiris, Kleber, Sascha, Schauer, Stefan, Hausmann, Martin, Nicholls, Flora, Van den Broek, Maries, Payeli, Sravan, Ciurea, Adrian, Milling, Simon, Stenner, Frank, Shaw, Jackie, Kollnberger, Simon, Bowness, Paul, Petrausch, Ulf, Renner, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4488392/
https://www.ncbi.nlm.nih.gov/pubmed/26125554
http://dx.doi.org/10.1371/journal.pone.0130811
_version_ 1782379148387287040
author Marroquin Belaunzaran, Osiris
Kleber, Sascha
Schauer, Stefan
Hausmann, Martin
Nicholls, Flora
Van den Broek, Maries
Payeli, Sravan
Ciurea, Adrian
Milling, Simon
Stenner, Frank
Shaw, Jackie
Kollnberger, Simon
Bowness, Paul
Petrausch, Ulf
Renner, Christoph
author_facet Marroquin Belaunzaran, Osiris
Kleber, Sascha
Schauer, Stefan
Hausmann, Martin
Nicholls, Flora
Van den Broek, Maries
Payeli, Sravan
Ciurea, Adrian
Milling, Simon
Stenner, Frank
Shaw, Jackie
Kollnberger, Simon
Bowness, Paul
Petrausch, Ulf
Renner, Christoph
author_sort Marroquin Belaunzaran, Osiris
collection PubMed
description OBJECTIVES: HLA-B27 is a common genetic risk factor for the development of Spondyloarthritides (SpA). HLA-B27 can misfold to form cell-surface heavy chain homodimers (B27(2)) and induce pro-inflammatory responses that may lead to SpA pathogenesis. The presence of B27(2) can be detected on leukocytes of HLA-B27+ Ankylosing spondylitis (AS) patients and HLA-B27 transgenic rats. We characterized a novel B27(2)–specific monoclonal antibody to study its therapeutic use in HLA-B27 associated disorders. METHODS: The monoclonal HD5 antibody was selected from a phage library to target cell-surface B27(2) homodimers and characterized for affinity, specificity and ligand binding. The immune modulating effect of HD5 was tested in HLA-B27 transgenic rats. Onset and progression of disease profiles were monitored during therapy. Cell-surface B27(2) and expansion of pro-inflammatory cells from blood, spleen and draining lymph nodes were assessed by flow cytometry. RESULTS: HD5 bound B27(2) with high specificity and affinity (K(d) = 0.32 nM). HD5 blocked cell-surface interaction of B27(2) with immune regulatory receptors KIR3DL2, LILRB2 and Pirb. In addition, HD5 modulated the production of TNF from CD4+ T-cells by limiting B27(2) interactions in vitro. In an HLA-B27 transgenic rat model repetitive dosing of HD5 reduced the expansion of pro-inflammatory CD4+ T-cells, and decreased the levels of soluble TNF and number of cell-surface B27(2) molecules. CONCLUSION: HD5 predominantly inhibits early TNF production and expansion of pro-inflammatory CD4+ T-cells in HLA-B27 transgenic rats. Monoclonal antibodies targeting cell-surface B27(2) propose a new concept for the modulation of inflammatory responses in HLA-B27 related disorders.
format Online
Article
Text
id pubmed-4488392
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-44883922015-07-02 HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats Marroquin Belaunzaran, Osiris Kleber, Sascha Schauer, Stefan Hausmann, Martin Nicholls, Flora Van den Broek, Maries Payeli, Sravan Ciurea, Adrian Milling, Simon Stenner, Frank Shaw, Jackie Kollnberger, Simon Bowness, Paul Petrausch, Ulf Renner, Christoph PLoS One Research Article OBJECTIVES: HLA-B27 is a common genetic risk factor for the development of Spondyloarthritides (SpA). HLA-B27 can misfold to form cell-surface heavy chain homodimers (B27(2)) and induce pro-inflammatory responses that may lead to SpA pathogenesis. The presence of B27(2) can be detected on leukocytes of HLA-B27+ Ankylosing spondylitis (AS) patients and HLA-B27 transgenic rats. We characterized a novel B27(2)–specific monoclonal antibody to study its therapeutic use in HLA-B27 associated disorders. METHODS: The monoclonal HD5 antibody was selected from a phage library to target cell-surface B27(2) homodimers and characterized for affinity, specificity and ligand binding. The immune modulating effect of HD5 was tested in HLA-B27 transgenic rats. Onset and progression of disease profiles were monitored during therapy. Cell-surface B27(2) and expansion of pro-inflammatory cells from blood, spleen and draining lymph nodes were assessed by flow cytometry. RESULTS: HD5 bound B27(2) with high specificity and affinity (K(d) = 0.32 nM). HD5 blocked cell-surface interaction of B27(2) with immune regulatory receptors KIR3DL2, LILRB2 and Pirb. In addition, HD5 modulated the production of TNF from CD4+ T-cells by limiting B27(2) interactions in vitro. In an HLA-B27 transgenic rat model repetitive dosing of HD5 reduced the expansion of pro-inflammatory CD4+ T-cells, and decreased the levels of soluble TNF and number of cell-surface B27(2) molecules. CONCLUSION: HD5 predominantly inhibits early TNF production and expansion of pro-inflammatory CD4+ T-cells in HLA-B27 transgenic rats. Monoclonal antibodies targeting cell-surface B27(2) propose a new concept for the modulation of inflammatory responses in HLA-B27 related disorders. Public Library of Science 2015-06-30 /pmc/articles/PMC4488392/ /pubmed/26125554 http://dx.doi.org/10.1371/journal.pone.0130811 Text en © 2015 Marroquin Belaunzaran et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Marroquin Belaunzaran, Osiris
Kleber, Sascha
Schauer, Stefan
Hausmann, Martin
Nicholls, Flora
Van den Broek, Maries
Payeli, Sravan
Ciurea, Adrian
Milling, Simon
Stenner, Frank
Shaw, Jackie
Kollnberger, Simon
Bowness, Paul
Petrausch, Ulf
Renner, Christoph
HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats
title HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats
title_full HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats
title_fullStr HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats
title_full_unstemmed HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats
title_short HLA-B27-Homodimer-Specific Antibody Modulates the Expansion of Pro-Inflammatory T-Cells in HLA-B27 Transgenic Rats
title_sort hla-b27-homodimer-specific antibody modulates the expansion of pro-inflammatory t-cells in hla-b27 transgenic rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4488392/
https://www.ncbi.nlm.nih.gov/pubmed/26125554
http://dx.doi.org/10.1371/journal.pone.0130811
work_keys_str_mv AT marroquinbelaunzaranosiris hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT klebersascha hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT schauerstefan hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT hausmannmartin hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT nichollsflora hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT vandenbroekmaries hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT payelisravan hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT ciureaadrian hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT millingsimon hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT stennerfrank hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT shawjackie hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT kollnbergersimon hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT bownesspaul hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT petrauschulf hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats
AT rennerchristoph hlab27homodimerspecificantibodymodulatestheexpansionofproinflammatorytcellsinhlab27transgenicrats