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An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody

The Lutheran glycoprotein (Lu), also known as basal cell adhesion molecule (B-CAM), is an Ig superfamily (IgSF) transmembrane receptor for laminin α5. Although Lu is not present in normal hepatocytes, its expression is significantly increased in hepatocellular carcinoma (HCC). In this study, we isol...

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Autores principales: Enomoto-Okawa, Yurie, Maeda, Yuka, Harashima, Nozomi, Sugawara, Yumika, Katagiri, Fumihiko, Hozumi, Kentaro, Hui, Kam Man, Nomizu, Motoyoshi, Ito, Yuji, Kikkawa, Yamato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5218393/
https://www.ncbi.nlm.nih.gov/pubmed/28060819
http://dx.doi.org/10.1371/journal.pone.0167860
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author Enomoto-Okawa, Yurie
Maeda, Yuka
Harashima, Nozomi
Sugawara, Yumika
Katagiri, Fumihiko
Hozumi, Kentaro
Hui, Kam Man
Nomizu, Motoyoshi
Ito, Yuji
Kikkawa, Yamato
author_facet Enomoto-Okawa, Yurie
Maeda, Yuka
Harashima, Nozomi
Sugawara, Yumika
Katagiri, Fumihiko
Hozumi, Kentaro
Hui, Kam Man
Nomizu, Motoyoshi
Ito, Yuji
Kikkawa, Yamato
author_sort Enomoto-Okawa, Yurie
collection PubMed
description The Lutheran glycoprotein (Lu), also known as basal cell adhesion molecule (B-CAM), is an Ig superfamily (IgSF) transmembrane receptor for laminin α5. Although Lu is not present in normal hepatocytes, its expression is significantly increased in hepatocellular carcinoma (HCC). In this study, we isolated thirteen phage antibodies to Lu from a phage library of peripheral blood from HCC patients, suggesting that these patients produced autoantibodies against endogenous Lu. To characterize the phage antibodies, we determined the Lu domains they recognize. The extracellular domain of Lu contains five IgSF domains, D1-D2-D3-D4-D5. The epitope of one phage antibody (A7) was localized to the D5 domain. The other phage antibodies recognized the D2 domain, which is also recognized by a function blocking mouse monoclonal antibody. One of the antibodies to D2 (C7) inhibited the binding of Lu to ligand, and it also prevented tumor cell migration on laminin-511 (LM-511). However, the C7 scFv purified from the periplasm fraction of bacteria did not exhibit the inhibitory effects, indicating that the scFv form could not sterically inhibit the binding of Lu to LM-511. We also identified the amino acid residues that form the epitope recognized by the C7 phage antibody. Mutagenesis studies showed that Arg(247) is necessary for forming the epitope. The C7 phage antibody and its epitope may be useful for developing drugs to prevent HCC progression and/or metastasis.
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spelling pubmed-52183932017-01-19 An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody Enomoto-Okawa, Yurie Maeda, Yuka Harashima, Nozomi Sugawara, Yumika Katagiri, Fumihiko Hozumi, Kentaro Hui, Kam Man Nomizu, Motoyoshi Ito, Yuji Kikkawa, Yamato PLoS One Research Article The Lutheran glycoprotein (Lu), also known as basal cell adhesion molecule (B-CAM), is an Ig superfamily (IgSF) transmembrane receptor for laminin α5. Although Lu is not present in normal hepatocytes, its expression is significantly increased in hepatocellular carcinoma (HCC). In this study, we isolated thirteen phage antibodies to Lu from a phage library of peripheral blood from HCC patients, suggesting that these patients produced autoantibodies against endogenous Lu. To characterize the phage antibodies, we determined the Lu domains they recognize. The extracellular domain of Lu contains five IgSF domains, D1-D2-D3-D4-D5. The epitope of one phage antibody (A7) was localized to the D5 domain. The other phage antibodies recognized the D2 domain, which is also recognized by a function blocking mouse monoclonal antibody. One of the antibodies to D2 (C7) inhibited the binding of Lu to ligand, and it also prevented tumor cell migration on laminin-511 (LM-511). However, the C7 scFv purified from the periplasm fraction of bacteria did not exhibit the inhibitory effects, indicating that the scFv form could not sterically inhibit the binding of Lu to LM-511. We also identified the amino acid residues that form the epitope recognized by the C7 phage antibody. Mutagenesis studies showed that Arg(247) is necessary for forming the epitope. The C7 phage antibody and its epitope may be useful for developing drugs to prevent HCC progression and/or metastasis. Public Library of Science 2017-01-06 /pmc/articles/PMC5218393/ /pubmed/28060819 http://dx.doi.org/10.1371/journal.pone.0167860 Text en © 2016 Enomoto-Okawa 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Enomoto-Okawa, Yurie
Maeda, Yuka
Harashima, Nozomi
Sugawara, Yumika
Katagiri, Fumihiko
Hozumi, Kentaro
Hui, Kam Man
Nomizu, Motoyoshi
Ito, Yuji
Kikkawa, Yamato
An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody
title An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody
title_full An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody
title_fullStr An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody
title_full_unstemmed An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody
title_short An Anti-Human Lutheran Glycoprotein Phage Antibody Inhibits Cell Migration on Laminin-511: Epitope Mapping of the Antibody
title_sort anti-human lutheran glycoprotein phage antibody inhibits cell migration on laminin-511: epitope mapping of the antibody
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5218393/
https://www.ncbi.nlm.nih.gov/pubmed/28060819
http://dx.doi.org/10.1371/journal.pone.0167860
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