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Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library

[Image: see text] Numerous anti-mucin 1 (anti-MUC1) antibodies that recognize O-glycan core structures have already been developed. However, most of them show low specificities toward O-glycan structures and/or low affinity toward a monovalent epitope. In this study, using an MUC1 glycopeptide libra...

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Autores principales: Naito, Shoichi, Takahashi, Tatsuya, Onoda, Junji, Uemura, Shoko, Ohyabu, Naoki, Takemoto, Hiroshi, Yamane, Shoji, Fujii, Ikuo, Nishimura, Shin-Ichiro, Numata, Yoshito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044872/
https://www.ncbi.nlm.nih.gov/pubmed/30023556
http://dx.doi.org/10.1021/acsomega.7b00708
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author Naito, Shoichi
Takahashi, Tatsuya
Onoda, Junji
Uemura, Shoko
Ohyabu, Naoki
Takemoto, Hiroshi
Yamane, Shoji
Fujii, Ikuo
Nishimura, Shin-Ichiro
Numata, Yoshito
author_facet Naito, Shoichi
Takahashi, Tatsuya
Onoda, Junji
Uemura, Shoko
Ohyabu, Naoki
Takemoto, Hiroshi
Yamane, Shoji
Fujii, Ikuo
Nishimura, Shin-Ichiro
Numata, Yoshito
author_sort Naito, Shoichi
collection PubMed
description [Image: see text] Numerous anti-mucin 1 (anti-MUC1) antibodies that recognize O-glycan core structures have already been developed. However, most of them show low specificities toward O-glycan structures and/or low affinity toward a monovalent epitope. In this study, using an MUC1 glycopeptide library, we established two novel anti-MUC1 monoclonal antibodies (1B2 and 12D10) with designed carbohydrate specificities. Compared with previously reported anti-MUC1 antibodies, 1B2 and 12D10 showed quite different features regarding their specificities, affinities, and reactivity profiles to various cell lines. Both antibodies recognized specific O-glycan structures at the PDT*R motif (the asterisk represents an O-glycosylation site). 1B2 recognized O-glycans with an unsubstituted O-6 position of the GalNAc residue (Tn, T, and 23ST), whereas 12D10 recognized Neu5Ac at the same position (STn, 26ST, and dST). Neither of them bound to glycopeptides with core 2 O-glycans that have GlcNAc at the O-6 position of the GalNAc residue. Furthermore, 1B2 and 12D10 showed a strong binding to not only native MUC1 but also 20-mer glycopeptide with a monovalent epitope. These anti-MUC1 antibodies should thus become powerful tools for biological studies on MUC1 O-glycan structures. Furthermore, the strategy of using glycopeptide libraries should enable the development of novel antibodies with predesigned O-glycan specificities.
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spelling pubmed-60448722018-07-16 Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library Naito, Shoichi Takahashi, Tatsuya Onoda, Junji Uemura, Shoko Ohyabu, Naoki Takemoto, Hiroshi Yamane, Shoji Fujii, Ikuo Nishimura, Shin-Ichiro Numata, Yoshito ACS Omega [Image: see text] Numerous anti-mucin 1 (anti-MUC1) antibodies that recognize O-glycan core structures have already been developed. However, most of them show low specificities toward O-glycan structures and/or low affinity toward a monovalent epitope. In this study, using an MUC1 glycopeptide library, we established two novel anti-MUC1 monoclonal antibodies (1B2 and 12D10) with designed carbohydrate specificities. Compared with previously reported anti-MUC1 antibodies, 1B2 and 12D10 showed quite different features regarding their specificities, affinities, and reactivity profiles to various cell lines. Both antibodies recognized specific O-glycan structures at the PDT*R motif (the asterisk represents an O-glycosylation site). 1B2 recognized O-glycans with an unsubstituted O-6 position of the GalNAc residue (Tn, T, and 23ST), whereas 12D10 recognized Neu5Ac at the same position (STn, 26ST, and dST). Neither of them bound to glycopeptides with core 2 O-glycans that have GlcNAc at the O-6 position of the GalNAc residue. Furthermore, 1B2 and 12D10 showed a strong binding to not only native MUC1 but also 20-mer glycopeptide with a monovalent epitope. These anti-MUC1 antibodies should thus become powerful tools for biological studies on MUC1 O-glycan structures. Furthermore, the strategy of using glycopeptide libraries should enable the development of novel antibodies with predesigned O-glycan specificities. American Chemical Society 2017-11-01 /pmc/articles/PMC6044872/ /pubmed/30023556 http://dx.doi.org/10.1021/acsomega.7b00708 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Naito, Shoichi
Takahashi, Tatsuya
Onoda, Junji
Uemura, Shoko
Ohyabu, Naoki
Takemoto, Hiroshi
Yamane, Shoji
Fujii, Ikuo
Nishimura, Shin-Ichiro
Numata, Yoshito
Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library
title Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library
title_full Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library
title_fullStr Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library
title_full_unstemmed Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library
title_short Generation of Novel Anti-MUC1 Monoclonal Antibodies with Designed Carbohydrate Specificities Using MUC1 Glycopeptide Library
title_sort generation of novel anti-muc1 monoclonal antibodies with designed carbohydrate specificities using muc1 glycopeptide library
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044872/
https://www.ncbi.nlm.nih.gov/pubmed/30023556
http://dx.doi.org/10.1021/acsomega.7b00708
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