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Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose

Antibody engineering has allowed for the rapid generation of binding agents against virtually any antigen of interest, predominantly for therapeutic applications. Considerably less attention has been given to the development of diagnostic reagents and biosensors using engineered antibodies. Recently...

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Detalles Bibliográficos
Autores principales: Hussack, Greg, Luo, Yan, Veldhuis, Linda, Hall, J. Christopher, Tanha, Jamshid, MacKenzie, Roger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274147/
https://www.ncbi.nlm.nih.gov/pubmed/22346702
http://dx.doi.org/10.3390/s90705351
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author Hussack, Greg
Luo, Yan
Veldhuis, Linda
Hall, J. Christopher
Tanha, Jamshid
MacKenzie, Roger
author_facet Hussack, Greg
Luo, Yan
Veldhuis, Linda
Hall, J. Christopher
Tanha, Jamshid
MacKenzie, Roger
author_sort Hussack, Greg
collection PubMed
description Antibody engineering has allowed for the rapid generation of binding agents against virtually any antigen of interest, predominantly for therapeutic applications. Considerably less attention has been given to the development of diagnostic reagents and biosensors using engineered antibodies. Recently, we produced a novel pentavalent bispecific antibody (i.e., decabody) by pentamerizing two single-domain antibodies (sdAbs) through the verotoxin B subunit (VTB) and found both fusion partners to be functional. Using a similar approach, we have engineered a bispecific pentameric fusion protein consisting of five sdAbs and five cellulose-binding modules (CBMs) linked via VTB. To find an optimal design format, we constructed six bispecific pentamers consisting of three different CBMs, fused to the Staphylococcus aureus-specific human sdAb HVHP428, in both orientations. One bispecific pentamer, containing an N-terminal CBM9 and C-terminal HVHP428, was soluble, non-aggregating, and did not degrade upon storage at 4 °C for over six months. This molecule was dually functional as it bound to cellulose-based filters as well as S. aureus cells. When impregnated in cellulose filters, the bispecific pentamer recognized S. aureus cells in a flow-through detection assay. The ability of pentamerized CBMs to bind cellulose may form the basis of an immobilization platform for multivalent display of high-avidity binding reagents on cellulosic filters for sensing of pathogens, biomarkers and environmental pollutants.
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spelling pubmed-32741472012-02-15 Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose Hussack, Greg Luo, Yan Veldhuis, Linda Hall, J. Christopher Tanha, Jamshid MacKenzie, Roger Sensors (Basel) Article Antibody engineering has allowed for the rapid generation of binding agents against virtually any antigen of interest, predominantly for therapeutic applications. Considerably less attention has been given to the development of diagnostic reagents and biosensors using engineered antibodies. Recently, we produced a novel pentavalent bispecific antibody (i.e., decabody) by pentamerizing two single-domain antibodies (sdAbs) through the verotoxin B subunit (VTB) and found both fusion partners to be functional. Using a similar approach, we have engineered a bispecific pentameric fusion protein consisting of five sdAbs and five cellulose-binding modules (CBMs) linked via VTB. To find an optimal design format, we constructed six bispecific pentamers consisting of three different CBMs, fused to the Staphylococcus aureus-specific human sdAb HVHP428, in both orientations. One bispecific pentamer, containing an N-terminal CBM9 and C-terminal HVHP428, was soluble, non-aggregating, and did not degrade upon storage at 4 °C for over six months. This molecule was dually functional as it bound to cellulose-based filters as well as S. aureus cells. When impregnated in cellulose filters, the bispecific pentamer recognized S. aureus cells in a flow-through detection assay. The ability of pentamerized CBMs to bind cellulose may form the basis of an immobilization platform for multivalent display of high-avidity binding reagents on cellulosic filters for sensing of pathogens, biomarkers and environmental pollutants. Molecular Diversity Preservation International (MDPI) 2009-07-07 /pmc/articles/PMC3274147/ /pubmed/22346702 http://dx.doi.org/10.3390/s90705351 Text en © 2009 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 license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Hussack, Greg
Luo, Yan
Veldhuis, Linda
Hall, J. Christopher
Tanha, Jamshid
MacKenzie, Roger
Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose
title Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose
title_full Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose
title_fullStr Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose
title_full_unstemmed Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose
title_short Multivalent Anchoring and Oriented Display of Single-Domain Antibodies on Cellulose
title_sort multivalent anchoring and oriented display of single-domain antibodies on cellulose
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274147/
https://www.ncbi.nlm.nih.gov/pubmed/22346702
http://dx.doi.org/10.3390/s90705351
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