High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays

Abstract Common inflammatory disorders such as ulcerative colitis and Crohn’s disease are non-invasively diagnosed or monitored by the biomarker calprotectin. However, current quantitative tests for calprotectin are antibody-based and vary depending on the type of antibody and assay used. Additional...

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Published in:Nature Communications
Main Authors: Cristina Díaz-Perlas, Benjamin Ricken, Lluc Farrera-Soler, Dmitrii Guschin, Florence Pojer, Kelvin Lau, Christian-Benedikt Gerhold, Christian Heinis
Format: Article
Language:English
Published: Nature Portfolio 2023-05-01
Online Access:https://doi.org/10.1038/s41467-023-38075-7
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author Cristina Díaz-Perlas
Benjamin Ricken
Lluc Farrera-Soler
Dmitrii Guschin
Florence Pojer
Kelvin Lau
Christian-Benedikt Gerhold
Christian Heinis
author_facet Cristina Díaz-Perlas
Benjamin Ricken
Lluc Farrera-Soler
Dmitrii Guschin
Florence Pojer
Kelvin Lau
Christian-Benedikt Gerhold
Christian Heinis
author_sort Cristina Díaz-Perlas
collection DOAJ
container_title Nature Communications
description Abstract Common inflammatory disorders such as ulcerative colitis and Crohn’s disease are non-invasively diagnosed or monitored by the biomarker calprotectin. However, current quantitative tests for calprotectin are antibody-based and vary depending on the type of antibody and assay used. Additionally, the binding epitopes of applied antibodies are not characterized by structures and for most antibodies it is unclear if they detect calprotectin dimer, tetramer, or both. Herein, we develop calprotectin ligands based on peptides, that offer advantages such as homogenous chemical composition, heat-stability, site-directed immobilization, and chemical synthesis at high purity and at low cost. By screening a 100-billion peptide phage display library against calprotectin, we identified a high-affinity peptide (K d = 26 ± 3 nM) that binds to a large surface region (951 Å2) as shown by X-ray structure analysis. The peptide uniquely binds the calprotectin tetramer, which enabled robust and sensitive quantification of a defined species of calprotectin by ELISA and lateral flow assays in patient samples, and thus offers an ideal affinity reagent for next-generation inflammatory disease diagnostic assays.
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spelling doaj-art-061fa9cf243f4870a024c34ddcd4e9e52025-08-19T21:48:04ZengNature PortfolioNature Communications2041-17232023-05-0114111410.1038/s41467-023-38075-7High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assaysCristina Díaz-Perlas0Benjamin Ricken1Lluc Farrera-Soler2Dmitrii Guschin3Florence Pojer4Kelvin Lau5Christian-Benedikt Gerhold6Christian Heinis7Institute of Chemical Sciences and Engineering, School of Basic Sciences, École Polytechnique Fédérale de Lausanne (EPFL)BÜHLMANN Laboratories AG, Baselstrasse 55Institute of Chemical Sciences and Engineering, School of Basic Sciences, École Polytechnique Fédérale de Lausanne (EPFL)BÜHLMANN Laboratories AG, Baselstrasse 55Protein Production and Structure Core Facility, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL)Protein Production and Structure Core Facility, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL)BÜHLMANN Laboratories AG, Baselstrasse 55Institute of Chemical Sciences and Engineering, School of Basic Sciences, École Polytechnique Fédérale de Lausanne (EPFL)Abstract Common inflammatory disorders such as ulcerative colitis and Crohn’s disease are non-invasively diagnosed or monitored by the biomarker calprotectin. However, current quantitative tests for calprotectin are antibody-based and vary depending on the type of antibody and assay used. Additionally, the binding epitopes of applied antibodies are not characterized by structures and for most antibodies it is unclear if they detect calprotectin dimer, tetramer, or both. Herein, we develop calprotectin ligands based on peptides, that offer advantages such as homogenous chemical composition, heat-stability, site-directed immobilization, and chemical synthesis at high purity and at low cost. By screening a 100-billion peptide phage display library against calprotectin, we identified a high-affinity peptide (K d = 26 ± 3 nM) that binds to a large surface region (951 Å2) as shown by X-ray structure analysis. The peptide uniquely binds the calprotectin tetramer, which enabled robust and sensitive quantification of a defined species of calprotectin by ELISA and lateral flow assays in patient samples, and thus offers an ideal affinity reagent for next-generation inflammatory disease diagnostic assays.https://doi.org/10.1038/s41467-023-38075-7
spellingShingle Cristina Díaz-Perlas
Benjamin Ricken
Lluc Farrera-Soler
Dmitrii Guschin
Florence Pojer
Kelvin Lau
Christian-Benedikt Gerhold
Christian Heinis
High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
title High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
title_full High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
title_fullStr High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
title_full_unstemmed High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
title_short High-affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
title_sort high affinity peptides developed against calprotectin and their application as synthetic ligands in diagnostic assays
url https://doi.org/10.1038/s41467-023-38075-7
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