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Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries

The affinity engineering is a key step to increase the efficacy of therapeutic monoclonal antibodies and yeast surface display is the most widely used and powerful affinity maturation approach, achieving picomolar binding affinities. In this study, we provide an optimization of the yeast surface dis...

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Autores principales: Cembrola, Biancamaria, Ruzza, Valentino, Troise, Fulvia, Esposito, Maria Luisa, Sasso, Emanuele, Cafaro, Valeria, Passariello, Margherita, Visconte, Feliciano, Raia, Maddalena, Del Vecchio, Luigi, D'Alise, Anna Morena, Cortese, Riccardo, Scarselli, Elisa, Zambrano, Nicola, De Lorenzo, Claudia, Nicosia, Alfredo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6959147/
https://www.ncbi.nlm.nih.gov/pubmed/31976323
http://dx.doi.org/10.1155/2019/6051870
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author Cembrola, Biancamaria
Ruzza, Valentino
Troise, Fulvia
Esposito, Maria Luisa
Sasso, Emanuele
Cafaro, Valeria
Passariello, Margherita
Visconte, Feliciano
Raia, Maddalena
Del Vecchio, Luigi
D'Alise, Anna Morena
Cortese, Riccardo
Scarselli, Elisa
Zambrano, Nicola
De Lorenzo, Claudia
Nicosia, Alfredo
author_facet Cembrola, Biancamaria
Ruzza, Valentino
Troise, Fulvia
Esposito, Maria Luisa
Sasso, Emanuele
Cafaro, Valeria
Passariello, Margherita
Visconte, Feliciano
Raia, Maddalena
Del Vecchio, Luigi
D'Alise, Anna Morena
Cortese, Riccardo
Scarselli, Elisa
Zambrano, Nicola
De Lorenzo, Claudia
Nicosia, Alfredo
author_sort Cembrola, Biancamaria
collection PubMed
description The affinity engineering is a key step to increase the efficacy of therapeutic monoclonal antibodies and yeast surface display is the most widely used and powerful affinity maturation approach, achieving picomolar binding affinities. In this study, we provide an optimization of the yeast surface display methodology, applied to the generation of potentially therapeutic high affinity antibodies targeting the immune checkpoint PD-L1. In this approach, we coupled a 10-cycle error-prone mutagenesis of heavy chain complementarity determining region 3 of an anti‐PD-L1 scFv, previously identified by phage display, with high-throughput sequencing, to generate scFv-yeast libraries with high mutant frequency and diversity. In addition, we set up a novel, faster and effective selection scheme by fluorescence-activated cell sorting, based on a fast drop of the antigen concentration between the first and the last selection cycles, unlike the gradual decrease typical of current selection protocols. In this way we isolated 6 enriched mutated scFv-yeast clones overall, showing an affinity improvement for soluble PD-L1 protein compared to the parental scFv. As a proof of the potency of the novel approach, we confirmed that the antibodies converted from all the mutated scFvs retained the affinity improvement. Remarkably, the best PD-L1 binder among them also bound with a higher affinity to PD-L1 expressed in its native conformation on human-activated lymphocytes, and it was able to stimulate lymphocyte proliferation in vitro more efficiently than its parental antibody. This optimized technology, besides the identification of a new potential checkpoint inhibitor, provides a tool for the quick isolation of high affinity binders.
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spelling pubmed-69591472020-01-23 Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries Cembrola, Biancamaria Ruzza, Valentino Troise, Fulvia Esposito, Maria Luisa Sasso, Emanuele Cafaro, Valeria Passariello, Margherita Visconte, Feliciano Raia, Maddalena Del Vecchio, Luigi D'Alise, Anna Morena Cortese, Riccardo Scarselli, Elisa Zambrano, Nicola De Lorenzo, Claudia Nicosia, Alfredo Biomed Res Int Research Article The affinity engineering is a key step to increase the efficacy of therapeutic monoclonal antibodies and yeast surface display is the most widely used and powerful affinity maturation approach, achieving picomolar binding affinities. In this study, we provide an optimization of the yeast surface display methodology, applied to the generation of potentially therapeutic high affinity antibodies targeting the immune checkpoint PD-L1. In this approach, we coupled a 10-cycle error-prone mutagenesis of heavy chain complementarity determining region 3 of an anti‐PD-L1 scFv, previously identified by phage display, with high-throughput sequencing, to generate scFv-yeast libraries with high mutant frequency and diversity. In addition, we set up a novel, faster and effective selection scheme by fluorescence-activated cell sorting, based on a fast drop of the antigen concentration between the first and the last selection cycles, unlike the gradual decrease typical of current selection protocols. In this way we isolated 6 enriched mutated scFv-yeast clones overall, showing an affinity improvement for soluble PD-L1 protein compared to the parental scFv. As a proof of the potency of the novel approach, we confirmed that the antibodies converted from all the mutated scFvs retained the affinity improvement. Remarkably, the best PD-L1 binder among them also bound with a higher affinity to PD-L1 expressed in its native conformation on human-activated lymphocytes, and it was able to stimulate lymphocyte proliferation in vitro more efficiently than its parental antibody. This optimized technology, besides the identification of a new potential checkpoint inhibitor, provides a tool for the quick isolation of high affinity binders. Hindawi 2019-12-28 /pmc/articles/PMC6959147/ /pubmed/31976323 http://dx.doi.org/10.1155/2019/6051870 Text en Copyright © 2019 Biancamaria Cembrola et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Cembrola, Biancamaria
Ruzza, Valentino
Troise, Fulvia
Esposito, Maria Luisa
Sasso, Emanuele
Cafaro, Valeria
Passariello, Margherita
Visconte, Feliciano
Raia, Maddalena
Del Vecchio, Luigi
D'Alise, Anna Morena
Cortese, Riccardo
Scarselli, Elisa
Zambrano, Nicola
De Lorenzo, Claudia
Nicosia, Alfredo
Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries
title Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries
title_full Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries
title_fullStr Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries
title_full_unstemmed Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries
title_short Rapid Affinity Maturation of Novel Anti-PD-L1 Antibodies by a Fast Drop of the Antigen Concentration and FACS Selection of Yeast Libraries
title_sort rapid affinity maturation of novel anti-pd-l1 antibodies by a fast drop of the antigen concentration and facs selection of yeast libraries
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6959147/
https://www.ncbi.nlm.nih.gov/pubmed/31976323
http://dx.doi.org/10.1155/2019/6051870
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