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Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes

Killer immunoglobulin‐like receptor (KIR) genes code for a family of inhibitory and activating receptors, finely tuning NK cell function. Numerous studies reported the relevance of KIR allelic polymorphism on KIR expression, ligand affinity, and strength in signal transduction. Although KIR variabil...

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Autores principales: Falco, Michela, Meazza, Raffaella, Alicata, Claudia, Canevali, Paolo, Muntasell, Aura, Bottino, Cristina, Moretta, Lorenzo, Pende, Daniela, Lopez‐Botet, Miguel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9544867/
https://www.ncbi.nlm.nih.gov/pubmed/35411634
http://dx.doi.org/10.1111/tan.14630
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author Falco, Michela
Meazza, Raffaella
Alicata, Claudia
Canevali, Paolo
Muntasell, Aura
Bottino, Cristina
Moretta, Lorenzo
Pende, Daniela
Lopez‐Botet, Miguel
author_facet Falco, Michela
Meazza, Raffaella
Alicata, Claudia
Canevali, Paolo
Muntasell, Aura
Bottino, Cristina
Moretta, Lorenzo
Pende, Daniela
Lopez‐Botet, Miguel
author_sort Falco, Michela
collection PubMed
description Killer immunoglobulin‐like receptor (KIR) genes code for a family of inhibitory and activating receptors, finely tuning NK cell function. Numerous studies reported the relevance of KIR allelic polymorphism on KIR expression, ligand affinity, and strength in signal transduction. Although KIR variability, including gene copy number and allelic polymorphism, in combination with HLA class I polymorphism, impacts both KIR expression and NK cell education, only a precise phenotypic analysis can define the size of the different KIR(pos) NK cell subsets. In this context, reagents recognizing a limited number of KIRs is essential. In this study, we have characterized the specificity of an anti‐KIR mAb termed HP‐DM1. Testing its binding to HEK‐293T cells transfected with plasmids coding for different KIRs, we demonstrated that HP‐DM1 mAb exclusively reacts with KIR2DL1. Using site‐directed mutagenesis, we identified the four amino acids relevant for HP‐DM1 recognition: M44, S67, R68, and T70. HP‐DM1 mAb binds to a conformational epitope including M44, the residue crucial for HLA‐C K80 recognition by KIR2DL1. Based on the HP‐DM1 epitope characterization, we could extend its reactivity to all KIR2DL1 allotypes identified except for KIR2DL1*022 and, most likely, KIR2DL1*020, predicting that it does not recognize any other KIR with the only exception of KIR2DS1*013. Moreover, by identifying the residues relevant for HP‐DM1 binding, continuously updating of its reactivity will be facilitated.
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spelling pubmed-95448672022-10-14 Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes Falco, Michela Meazza, Raffaella Alicata, Claudia Canevali, Paolo Muntasell, Aura Bottino, Cristina Moretta, Lorenzo Pende, Daniela Lopez‐Botet, Miguel HLA Original Articles Killer immunoglobulin‐like receptor (KIR) genes code for a family of inhibitory and activating receptors, finely tuning NK cell function. Numerous studies reported the relevance of KIR allelic polymorphism on KIR expression, ligand affinity, and strength in signal transduction. Although KIR variability, including gene copy number and allelic polymorphism, in combination with HLA class I polymorphism, impacts both KIR expression and NK cell education, only a precise phenotypic analysis can define the size of the different KIR(pos) NK cell subsets. In this context, reagents recognizing a limited number of KIRs is essential. In this study, we have characterized the specificity of an anti‐KIR mAb termed HP‐DM1. Testing its binding to HEK‐293T cells transfected with plasmids coding for different KIRs, we demonstrated that HP‐DM1 mAb exclusively reacts with KIR2DL1. Using site‐directed mutagenesis, we identified the four amino acids relevant for HP‐DM1 recognition: M44, S67, R68, and T70. HP‐DM1 mAb binds to a conformational epitope including M44, the residue crucial for HLA‐C K80 recognition by KIR2DL1. Based on the HP‐DM1 epitope characterization, we could extend its reactivity to all KIR2DL1 allotypes identified except for KIR2DL1*022 and, most likely, KIR2DL1*020, predicting that it does not recognize any other KIR with the only exception of KIR2DS1*013. Moreover, by identifying the residues relevant for HP‐DM1 binding, continuously updating of its reactivity will be facilitated. Blackwell Publishing Ltd 2022-06-09 2022-08 /pmc/articles/PMC9544867/ /pubmed/35411634 http://dx.doi.org/10.1111/tan.14630 Text en © 2022 The Authors. HLA: Immune Response Genetics published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Falco, Michela
Meazza, Raffaella
Alicata, Claudia
Canevali, Paolo
Muntasell, Aura
Bottino, Cristina
Moretta, Lorenzo
Pende, Daniela
Lopez‐Botet, Miguel
Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes
title Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes
title_full Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes
title_fullStr Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes
title_full_unstemmed Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes
title_short Epitope characterization of a monoclonal antibody that selectively recognizes KIR2DL1 allotypes
title_sort epitope characterization of a monoclonal antibody that selectively recognizes kir2dl1 allotypes
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9544867/
https://www.ncbi.nlm.nih.gov/pubmed/35411634
http://dx.doi.org/10.1111/tan.14630
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