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Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments

Open cell-free translation systems based on Escherichia coli cell lysates have successfully been used to produce antibodies and antibody fragments. In this study, we demonstrate the cell-free expression of functional single-chain antibody variable fragments (scFvs) in a eukaryotic and endotoxin-free...

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Autores principales: Stech, Marlitt, Hust, Michael, Schulze, Corina, Dübel, Stefan, Kubick, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4374706/
https://www.ncbi.nlm.nih.gov/pubmed/25821419
http://dx.doi.org/10.1002/elsc.201400036
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author Stech, Marlitt
Hust, Michael
Schulze, Corina
Dübel, Stefan
Kubick, Stefan
author_facet Stech, Marlitt
Hust, Michael
Schulze, Corina
Dübel, Stefan
Kubick, Stefan
author_sort Stech, Marlitt
collection PubMed
description Open cell-free translation systems based on Escherichia coli cell lysates have successfully been used to produce antibodies and antibody fragments. In this study, we demonstrate the cell-free expression of functional single-chain antibody variable fragments (scFvs) in a eukaryotic and endotoxin-free in vitro translation system based on Spodoptera frugiperda (Sf21) insect cell extracts. Three scFv candidates with different specificities were chosen as models. The first scFv candidate SH527-IIA4 specifically discriminates between its phosphorylated (SMAD2-P) and nonphosphorylated antigens (SMAD2) (where SMAD is mothers against decapentaplegic homolog 2), whereas the second scFv candidate SH527-IIC10 recognizes both, SMAD2-P and SMAD2. The third scFv candidate SH855-C11 binds specifically to a linear epitope of the CXC chemokine receptor type 5. The translocation of antibody fragments into the lumen of endogenous microsomal vesicles, which are contained in the lysate, was facilitated by fusion of scFv genes to the insect cell specific signal sequence of honeybee melittin. We compared the binding capabilities of scFv fragments with and without melittin signal peptide and detected that translocated scFv fragments were highly functional, whereas scFvs synthesized in the cytosol of the cell extract showed strongly decreased binding capabilities. Additionally, we describe a cell-free protein synthesis method for the incorporation of noncanonical amino acids into scFv molecules in eukaryotic cell lysates. We demonstrate the successful cotranslational labeling of de novo synthesized scFv molecules with fluorescent amino acids, using residue-specific as well as site-specific labeling.
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spelling pubmed-43747062015-03-27 Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments Stech, Marlitt Hust, Michael Schulze, Corina Dübel, Stefan Kubick, Stefan Eng Life Sci Research Articles Open cell-free translation systems based on Escherichia coli cell lysates have successfully been used to produce antibodies and antibody fragments. In this study, we demonstrate the cell-free expression of functional single-chain antibody variable fragments (scFvs) in a eukaryotic and endotoxin-free in vitro translation system based on Spodoptera frugiperda (Sf21) insect cell extracts. Three scFv candidates with different specificities were chosen as models. The first scFv candidate SH527-IIA4 specifically discriminates between its phosphorylated (SMAD2-P) and nonphosphorylated antigens (SMAD2) (where SMAD is mothers against decapentaplegic homolog 2), whereas the second scFv candidate SH527-IIC10 recognizes both, SMAD2-P and SMAD2. The third scFv candidate SH855-C11 binds specifically to a linear epitope of the CXC chemokine receptor type 5. The translocation of antibody fragments into the lumen of endogenous microsomal vesicles, which are contained in the lysate, was facilitated by fusion of scFv genes to the insect cell specific signal sequence of honeybee melittin. We compared the binding capabilities of scFv fragments with and without melittin signal peptide and detected that translocated scFv fragments were highly functional, whereas scFvs synthesized in the cytosol of the cell extract showed strongly decreased binding capabilities. Additionally, we describe a cell-free protein synthesis method for the incorporation of noncanonical amino acids into scFv molecules in eukaryotic cell lysates. We demonstrate the successful cotranslational labeling of de novo synthesized scFv molecules with fluorescent amino acids, using residue-specific as well as site-specific labeling. BlackWell Publishing Ltd 2014-07 2014-07-15 /pmc/articles/PMC4374706/ /pubmed/25821419 http://dx.doi.org/10.1002/elsc.201400036 Text en © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim http://creativecommons.org/licenses/by-nd/4.0/ This is an open access article under the terms of the Creative Commons Attribution -NoDerivs 4.0 License, which permits use and distribution in any medium, provided the original work is properly cited and no modifications or adaptations are made.
spellingShingle Research Articles
Stech, Marlitt
Hust, Michael
Schulze, Corina
Dübel, Stefan
Kubick, Stefan
Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments
title Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments
title_full Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments
title_fullStr Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments
title_full_unstemmed Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments
title_short Cell-free eukaryotic systems for the production, engineering, and modification of scFv antibody fragments
title_sort cell-free eukaryotic systems for the production, engineering, and modification of scfv antibody fragments
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4374706/
https://www.ncbi.nlm.nih.gov/pubmed/25821419
http://dx.doi.org/10.1002/elsc.201400036
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