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Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †

Analytical methods for molecular characterization of diagnostic or therapeutic targets have recently gained high interest. This review summarizes the combination of mass spectrometry and surface plasmon resonance (SPR) biosensor analysis for identification and affinity determination of protein inter...

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Autores principales: Lupu, Loredana-Mirela, Wiegand, Pascal, Holdschick, Daria, Mihoc, Delia, Maeser, Stefan, Rawer, Stephan, Völklein, Friedemann, Malek, Ebrahim, Barka, Frederik, Knauer, Sascha, Uth, Christina, Hennermann, Julia, Kleinekofort, Wolfgang, Hahn, Andreas, Barka, Günes, Przybylski, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8657952/
https://www.ncbi.nlm.nih.gov/pubmed/34884636
http://dx.doi.org/10.3390/ijms222312832
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author Lupu, Loredana-Mirela
Wiegand, Pascal
Holdschick, Daria
Mihoc, Delia
Maeser, Stefan
Rawer, Stephan
Völklein, Friedemann
Malek, Ebrahim
Barka, Frederik
Knauer, Sascha
Uth, Christina
Hennermann, Julia
Kleinekofort, Wolfgang
Hahn, Andreas
Barka, Günes
Przybylski, Michael
author_facet Lupu, Loredana-Mirela
Wiegand, Pascal
Holdschick, Daria
Mihoc, Delia
Maeser, Stefan
Rawer, Stephan
Völklein, Friedemann
Malek, Ebrahim
Barka, Frederik
Knauer, Sascha
Uth, Christina
Hennermann, Julia
Kleinekofort, Wolfgang
Hahn, Andreas
Barka, Günes
Przybylski, Michael
author_sort Lupu, Loredana-Mirela
collection PubMed
description Analytical methods for molecular characterization of diagnostic or therapeutic targets have recently gained high interest. This review summarizes the combination of mass spectrometry and surface plasmon resonance (SPR) biosensor analysis for identification and affinity determination of protein interactions with antibodies and DNA-aptamers. The binding constant (K(D)) of a protein–antibody complex is first determined by immobilizing an antibody or DNA-aptamer on an SPR chip. A proteolytic peptide mixture is then applied to the chip, and following removal of unbound material by washing, the epitope(s) peptide(s) are eluted and identified by MALDI-MS. The SPR-MS combination was applied to a wide range of affinity pairs. Distinct epitope peptides were identified for the cardiac biomarker myoglobin (MG) both from monoclonal and polyclonal antibodies, and binding constants determined for equine and human MG provided molecular assessment of cross immunoreactivities. Mass spectrometric epitope identifications were obtained for linear, as well as for assembled (“conformational”) antibody epitopes, e.g., for the polypeptide chemokine Interleukin-8. Immobilization using protein G substantially improved surface fixation and antibody stabilities for epitope identification and affinity determination. Moreover, epitopes were successfully determined for polyclonal antibodies from biological material, such as from patient antisera upon enzyme replacement therapy of lysosomal diseases. The SPR-MS combination was also successfully applied to identify linear and assembled epitopes for DNA–aptamer interaction complexes of the tumor diagnostic protein C-Met. In summary, the SPR-MS combination has been established as a powerful molecular tool for identification of protein interaction epitopes.
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spelling pubmed-86579522021-12-10 Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination † Lupu, Loredana-Mirela Wiegand, Pascal Holdschick, Daria Mihoc, Delia Maeser, Stefan Rawer, Stephan Völklein, Friedemann Malek, Ebrahim Barka, Frederik Knauer, Sascha Uth, Christina Hennermann, Julia Kleinekofort, Wolfgang Hahn, Andreas Barka, Günes Przybylski, Michael Int J Mol Sci Review Analytical methods for molecular characterization of diagnostic or therapeutic targets have recently gained high interest. This review summarizes the combination of mass spectrometry and surface plasmon resonance (SPR) biosensor analysis for identification and affinity determination of protein interactions with antibodies and DNA-aptamers. The binding constant (K(D)) of a protein–antibody complex is first determined by immobilizing an antibody or DNA-aptamer on an SPR chip. A proteolytic peptide mixture is then applied to the chip, and following removal of unbound material by washing, the epitope(s) peptide(s) are eluted and identified by MALDI-MS. The SPR-MS combination was applied to a wide range of affinity pairs. Distinct epitope peptides were identified for the cardiac biomarker myoglobin (MG) both from monoclonal and polyclonal antibodies, and binding constants determined for equine and human MG provided molecular assessment of cross immunoreactivities. Mass spectrometric epitope identifications were obtained for linear, as well as for assembled (“conformational”) antibody epitopes, e.g., for the polypeptide chemokine Interleukin-8. Immobilization using protein G substantially improved surface fixation and antibody stabilities for epitope identification and affinity determination. Moreover, epitopes were successfully determined for polyclonal antibodies from biological material, such as from patient antisera upon enzyme replacement therapy of lysosomal diseases. The SPR-MS combination was also successfully applied to identify linear and assembled epitopes for DNA–aptamer interaction complexes of the tumor diagnostic protein C-Met. In summary, the SPR-MS combination has been established as a powerful molecular tool for identification of protein interaction epitopes. MDPI 2021-11-27 /pmc/articles/PMC8657952/ /pubmed/34884636 http://dx.doi.org/10.3390/ijms222312832 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Lupu, Loredana-Mirela
Wiegand, Pascal
Holdschick, Daria
Mihoc, Delia
Maeser, Stefan
Rawer, Stephan
Völklein, Friedemann
Malek, Ebrahim
Barka, Frederik
Knauer, Sascha
Uth, Christina
Hennermann, Julia
Kleinekofort, Wolfgang
Hahn, Andreas
Barka, Günes
Przybylski, Michael
Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †
title Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †
title_full Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †
title_fullStr Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †
title_full_unstemmed Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †
title_short Identification and Affinity Determination of Protein-Antibody and Protein-Aptamer Epitopes by Biosensor-Mass Spectrometry Combination †
title_sort identification and affinity determination of protein-antibody and protein-aptamer epitopes by biosensor-mass spectrometry combination †
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8657952/
https://www.ncbi.nlm.nih.gov/pubmed/34884636
http://dx.doi.org/10.3390/ijms222312832
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