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High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display

Antibodies are ubiquitous and essential reagents for biomedical research. Uses of antibodies include quantifying proteins, identifying the temporal and spatial pattern of expression in cells and tissue, and determining how proteins function under normal or pathological conditions. Specific antibodie...

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Detalles Bibliográficos
Autores principales: Zhao, Lequn, Qu, Liang, Zhou, Jing, Sun, Zhengda, Zou, Hao, Chen, Yunn-Yi, Marks, James D., Zhou, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4213037/
https://www.ncbi.nlm.nih.gov/pubmed/25353955
http://dx.doi.org/10.1371/journal.pone.0111339
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author Zhao, Lequn
Qu, Liang
Zhou, Jing
Sun, Zhengda
Zou, Hao
Chen, Yunn-Yi
Marks, James D.
Zhou, Yu
author_facet Zhao, Lequn
Qu, Liang
Zhou, Jing
Sun, Zhengda
Zou, Hao
Chen, Yunn-Yi
Marks, James D.
Zhou, Yu
author_sort Zhao, Lequn
collection PubMed
description Antibodies are ubiquitous and essential reagents for biomedical research. Uses of antibodies include quantifying proteins, identifying the temporal and spatial pattern of expression in cells and tissue, and determining how proteins function under normal or pathological conditions. Specific antibodies are only available for a small portion of the proteome, limiting study of those proteins for which antibodies do not exist. The technologies to generate target-specific antibodies need to be improved to obtain high quality antibodies to the proteome at reasonable cost. Here we show that renewable, validated, and standardized monoclonal antibodies can be generated at high throughput, without the need for antigen production or animal immunizations. In this study, 60 protein domains from 24 selected secreted proteins were expressed on the surface of yeast and used for selection of phage antibodies, over 400 monoclonal antibodies were identified within 3 weeks. A subset of these antibodies was validated for binding to cancer cells that overexpress the target protein by flow cytometry or immunohistochemistry. This approach will be applicable to many of the membrane-bound and the secreted proteins, 20–40% of the proteome, accelerating the timeline for Ab generation while reducing the cost.
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spelling pubmed-42130372014-11-05 High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display Zhao, Lequn Qu, Liang Zhou, Jing Sun, Zhengda Zou, Hao Chen, Yunn-Yi Marks, James D. Zhou, Yu PLoS One Research Article Antibodies are ubiquitous and essential reagents for biomedical research. Uses of antibodies include quantifying proteins, identifying the temporal and spatial pattern of expression in cells and tissue, and determining how proteins function under normal or pathological conditions. Specific antibodies are only available for a small portion of the proteome, limiting study of those proteins for which antibodies do not exist. The technologies to generate target-specific antibodies need to be improved to obtain high quality antibodies to the proteome at reasonable cost. Here we show that renewable, validated, and standardized monoclonal antibodies can be generated at high throughput, without the need for antigen production or animal immunizations. In this study, 60 protein domains from 24 selected secreted proteins were expressed on the surface of yeast and used for selection of phage antibodies, over 400 monoclonal antibodies were identified within 3 weeks. A subset of these antibodies was validated for binding to cancer cells that overexpress the target protein by flow cytometry or immunohistochemistry. This approach will be applicable to many of the membrane-bound and the secreted proteins, 20–40% of the proteome, accelerating the timeline for Ab generation while reducing the cost. Public Library of Science 2014-10-29 /pmc/articles/PMC4213037/ /pubmed/25353955 http://dx.doi.org/10.1371/journal.pone.0111339 Text en © 2014 Zhao et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhao, Lequn
Qu, Liang
Zhou, Jing
Sun, Zhengda
Zou, Hao
Chen, Yunn-Yi
Marks, James D.
Zhou, Yu
High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display
title High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display
title_full High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display
title_fullStr High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display
title_full_unstemmed High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display
title_short High Throughput Identification of Monoclonal Antibodies to Membrane Bound and Secreted Proteins Using Yeast and Phage Display
title_sort high throughput identification of monoclonal antibodies to membrane bound and secreted proteins using yeast and phage display
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4213037/
https://www.ncbi.nlm.nih.gov/pubmed/25353955
http://dx.doi.org/10.1371/journal.pone.0111339
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