Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>

<p>Abstract</p> <p>Background</p> <p>The Chemotaxis inhibitory protein of <it>Staphylococcus aureus </it>(CHIPS) blocks the Complement fragment C5a receptor (C5aR) and formylated peptide receptor (FPR) and is thereby a potent inhibitor of neutrophil chemotax...

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Main Authors: Furebring Christina, Hijnen Marcel, Walse Björn, Haas Pieter-Jan, Gustafsson Erika, Ohlin Mats, van Strijp Jos AG, van Kessel Kok PM
Format: Article
Language:English
Published: BMC 2009-03-01
Series:BMC Immunology
Online Access:http://www.biomedcentral.com/1471-2172/10/13
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spelling doaj-39009fc9a36c4933a64b7a10c2c6bbf82020-11-25T03:40:10ZengBMCBMC Immunology1471-21722009-03-011011310.1186/1471-2172-10-13Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>Furebring ChristinaHijnen MarcelWalse BjörnHaas Pieter-JanGustafsson ErikaOhlin Matsvan Strijp Jos AGvan Kessel Kok PM<p>Abstract</p> <p>Background</p> <p>The Chemotaxis inhibitory protein of <it>Staphylococcus aureus </it>(CHIPS) blocks the Complement fragment C5a receptor (C5aR) and formylated peptide receptor (FPR) and is thereby a potent inhibitor of neutrophil chemotaxis and activation of inflammatory responses. The majority of the healthy human population has antibodies against CHIPS that have been shown to interfere with its function <it>in vitro</it>. The aim of this study was to define potential epitopes for human antibodies on the CHIPS surface. We also initiate the process to identify a mutated CHIPS molecule that is not efficiently recognized by preformed anti-CHIPS antibodies and retains anti-inflammatory activity.</p> <p>Results</p> <p>In this paper, we panned peptide displaying phage libraries against a pool of CHIPS specific affinity-purified polyclonal human IgG. The selected peptides could be divided into two groups of sequences. The first group was the most dominant with 36 of the 48 sequenced clones represented. Binding to human affinity-purified IgG was verified by ELISA for a selection of peptide sequences in phage format. For further analysis, one peptide was chemically synthesized and antibodies affinity-purified on this peptide were found to bind the CHIPS molecule as studied by ELISA and Surface Plasmon Resonance. Furthermore, seven potential conformational epitopes responsible for antibody recognition were identified by mapping phage selected peptide sequences on the CHIPS surface as defined in the NMR structure of the recombinant CHIPS<sub>31–121 </sub>protein. Mapped epitopes were verified by <it>in vitro </it>mutational analysis of the CHIPS molecule. Single mutations introduced in the proposed antibody epitopes were shown to decrease antibody binding to CHIPS. The biological function in terms of C5aR signaling was studied by flow cytometry. A few mutations were shown to affect this biological function as well as the antibody binding.</p> <p>Conclusion</p> <p>Conformational epitopes recognized by human antibodies have been mapped on the CHIPS surface and amino acid residues involved in both antibody and C5aR interaction could be defined. This information has implications for the development of an effective anti-inflammatory agent based on a functional CHIPS molecule with low interaction with human IgG.</p> http://www.biomedcentral.com/1471-2172/10/13
collection DOAJ
language English
format Article
sources DOAJ
author Furebring Christina
Hijnen Marcel
Walse Björn
Haas Pieter-Jan
Gustafsson Erika
Ohlin Mats
van Strijp Jos AG
van Kessel Kok PM
spellingShingle Furebring Christina
Hijnen Marcel
Walse Björn
Haas Pieter-Jan
Gustafsson Erika
Ohlin Mats
van Strijp Jos AG
van Kessel Kok PM
Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>
BMC Immunology
author_facet Furebring Christina
Hijnen Marcel
Walse Björn
Haas Pieter-Jan
Gustafsson Erika
Ohlin Mats
van Strijp Jos AG
van Kessel Kok PM
author_sort Furebring Christina
title Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>
title_short Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>
title_full Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>
title_fullStr Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>
title_full_unstemmed Identification of conformational epitopes for human IgG on Chemotaxis inhibitory protein of <it>Staphylococcus aureus</it>
title_sort identification of conformational epitopes for human igg on chemotaxis inhibitory protein of <it>staphylococcus aureus</it>
publisher BMC
series BMC Immunology
issn 1471-2172
publishDate 2009-03-01
description <p>Abstract</p> <p>Background</p> <p>The Chemotaxis inhibitory protein of <it>Staphylococcus aureus </it>(CHIPS) blocks the Complement fragment C5a receptor (C5aR) and formylated peptide receptor (FPR) and is thereby a potent inhibitor of neutrophil chemotaxis and activation of inflammatory responses. The majority of the healthy human population has antibodies against CHIPS that have been shown to interfere with its function <it>in vitro</it>. The aim of this study was to define potential epitopes for human antibodies on the CHIPS surface. We also initiate the process to identify a mutated CHIPS molecule that is not efficiently recognized by preformed anti-CHIPS antibodies and retains anti-inflammatory activity.</p> <p>Results</p> <p>In this paper, we panned peptide displaying phage libraries against a pool of CHIPS specific affinity-purified polyclonal human IgG. The selected peptides could be divided into two groups of sequences. The first group was the most dominant with 36 of the 48 sequenced clones represented. Binding to human affinity-purified IgG was verified by ELISA for a selection of peptide sequences in phage format. For further analysis, one peptide was chemically synthesized and antibodies affinity-purified on this peptide were found to bind the CHIPS molecule as studied by ELISA and Surface Plasmon Resonance. Furthermore, seven potential conformational epitopes responsible for antibody recognition were identified by mapping phage selected peptide sequences on the CHIPS surface as defined in the NMR structure of the recombinant CHIPS<sub>31–121 </sub>protein. Mapped epitopes were verified by <it>in vitro </it>mutational analysis of the CHIPS molecule. Single mutations introduced in the proposed antibody epitopes were shown to decrease antibody binding to CHIPS. The biological function in terms of C5aR signaling was studied by flow cytometry. A few mutations were shown to affect this biological function as well as the antibody binding.</p> <p>Conclusion</p> <p>Conformational epitopes recognized by human antibodies have been mapped on the CHIPS surface and amino acid residues involved in both antibody and C5aR interaction could be defined. This information has implications for the development of an effective anti-inflammatory agent based on a functional CHIPS molecule with low interaction with human IgG.</p>
url http://www.biomedcentral.com/1471-2172/10/13
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