Cargando…

Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression

Poliovirus (PV)-specific intestinal IgAs are important for cessation of PV shedding in the gastrointestinal tract following an acute infection with wild type or vaccine-derived PV strains. We sought to produce IgA monoclonal antibodies (mAbs) with PV neutralizing activity. We first performed de novo...

Descripción completa

Detalles Bibliográficos
Autores principales: Puligedda, Rama Devudu, Vigdorovich, Vladimir, Kouiavskaia, Diana, Kattala, Chandana Devi, Zhao, Jiang-yang, Al-Saleem, Fetweh H., Chumakov, Konstantin, Sather, D. Noah, Dessain, Scott K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7148538/
https://www.ncbi.nlm.nih.gov/pubmed/32121092
http://dx.doi.org/10.3390/antib9010005
_version_ 1783520615831961600
author Puligedda, Rama Devudu
Vigdorovich, Vladimir
Kouiavskaia, Diana
Kattala, Chandana Devi
Zhao, Jiang-yang
Al-Saleem, Fetweh H.
Chumakov, Konstantin
Sather, D. Noah
Dessain, Scott K.
author_facet Puligedda, Rama Devudu
Vigdorovich, Vladimir
Kouiavskaia, Diana
Kattala, Chandana Devi
Zhao, Jiang-yang
Al-Saleem, Fetweh H.
Chumakov, Konstantin
Sather, D. Noah
Dessain, Scott K.
author_sort Puligedda, Rama Devudu
collection PubMed
description Poliovirus (PV)-specific intestinal IgAs are important for cessation of PV shedding in the gastrointestinal tract following an acute infection with wild type or vaccine-derived PV strains. We sought to produce IgA monoclonal antibodies (mAbs) with PV neutralizing activity. We first performed de novo IgA discovery from primary human B cells using a hybridoma method that allows assessment of mAb binding and expression on the hybridoma surface: On-Cell mAb Screening (OCMS™). Six IgA1 mAbs were cloned by this method; three potently neutralized type 3 Sabin and wt PV strains. The hybridoma mAbs were heterogeneous, expressed in monomeric, dimeric, and aberrant forms. We also used recombinant methods to convert two high-potency anti-PV IgG mAbs into dimeric IgA1 and IgA2 mAbs. Isotype switching did not substantially change their neutralization activities. To purify the recombinant mAbs, Protein L binding was used, and one of the mAbs required a single amino acid substitution in its κ LC in order to enable protein L binding. Lastly, we used OCMS to assess IgA expression on the surface of hybridomas and transiently transfected, adherent cells. These studies have generated potent anti-PV IgA mAbs, for use in animal models, as well as additional tools for the discovery and production of human IgA mAbs.
format Online
Article
Text
id pubmed-7148538
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-71485382020-04-20 Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression Puligedda, Rama Devudu Vigdorovich, Vladimir Kouiavskaia, Diana Kattala, Chandana Devi Zhao, Jiang-yang Al-Saleem, Fetweh H. Chumakov, Konstantin Sather, D. Noah Dessain, Scott K. Antibodies (Basel) Article Poliovirus (PV)-specific intestinal IgAs are important for cessation of PV shedding in the gastrointestinal tract following an acute infection with wild type or vaccine-derived PV strains. We sought to produce IgA monoclonal antibodies (mAbs) with PV neutralizing activity. We first performed de novo IgA discovery from primary human B cells using a hybridoma method that allows assessment of mAb binding and expression on the hybridoma surface: On-Cell mAb Screening (OCMS™). Six IgA1 mAbs were cloned by this method; three potently neutralized type 3 Sabin and wt PV strains. The hybridoma mAbs were heterogeneous, expressed in monomeric, dimeric, and aberrant forms. We also used recombinant methods to convert two high-potency anti-PV IgG mAbs into dimeric IgA1 and IgA2 mAbs. Isotype switching did not substantially change their neutralization activities. To purify the recombinant mAbs, Protein L binding was used, and one of the mAbs required a single amino acid substitution in its κ LC in order to enable protein L binding. Lastly, we used OCMS to assess IgA expression on the surface of hybridomas and transiently transfected, adherent cells. These studies have generated potent anti-PV IgA mAbs, for use in animal models, as well as additional tools for the discovery and production of human IgA mAbs. MDPI 2020-02-28 /pmc/articles/PMC7148538/ /pubmed/32121092 http://dx.doi.org/10.3390/antib9010005 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Puligedda, Rama Devudu
Vigdorovich, Vladimir
Kouiavskaia, Diana
Kattala, Chandana Devi
Zhao, Jiang-yang
Al-Saleem, Fetweh H.
Chumakov, Konstantin
Sather, D. Noah
Dessain, Scott K.
Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression
title Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression
title_full Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression
title_fullStr Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression
title_full_unstemmed Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression
title_short Human IgA Monoclonal Antibodies That Neutralize Poliovirus, Produced by Hybridomas and Recombinant Expression
title_sort human iga monoclonal antibodies that neutralize poliovirus, produced by hybridomas and recombinant expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7148538/
https://www.ncbi.nlm.nih.gov/pubmed/32121092
http://dx.doi.org/10.3390/antib9010005
work_keys_str_mv AT puligeddaramadevudu humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT vigdorovichvladimir humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT kouiavskaiadiana humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT kattalachandanadevi humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT zhaojiangyang humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT alsaleemfetwehh humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT chumakovkonstantin humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT satherdnoah humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression
AT dessainscottk humanigamonoclonalantibodiesthatneutralizepoliovirusproducedbyhybridomasandrecombinantexpression